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US10711954B2 - Tangle-resistant decorative lighting assembly - Google Patents

Tangle-resistant decorative lighting assembly Download PDF

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Publication number
US10711954B2
US10711954B2 US16/368,681 US201916368681A US10711954B2 US 10711954 B2 US10711954 B2 US 10711954B2 US 201916368681 A US201916368681 A US 201916368681A US 10711954 B2 US10711954 B2 US 10711954B2
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United States
Prior art keywords
wire
lamp assemblies
strands
decorative lighting
lighting assembly
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US16/368,681
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US20190285232A1 (en
Inventor
Johnny Chen
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Willis Electric Co Ltd
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Willis Electric Co Ltd
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First worldwide family litigation filed litigation Critical https://patents.darts-ip.com/?family=58558306&utm_source=google_patent&utm_medium=platform_link&utm_campaign=public_patent_search&patent=US10711954(B2) "Global patent litigation dataset” by Darts-ip is licensed under a Creative Commons Attribution 4.0 International License.
Priority to US16/368,681 priority Critical patent/US10711954B2/en
Application filed by Willis Electric Co Ltd filed Critical Willis Electric Co Ltd
Publication of US20190285232A1 publication Critical patent/US20190285232A1/en
Assigned to WILLIS ELECTRIC CO., LTD. reassignment WILLIS ELECTRIC CO., LTD. ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS). Assignors: CHEN, JOHNNY
Priority to US16/872,607 priority patent/US11085595B2/en
Priority to US16/894,989 priority patent/US11306881B2/en
Publication of US10711954B2 publication Critical patent/US10711954B2/en
Application granted granted Critical
Priority to US17/394,041 priority patent/US11578842B2/en
Priority to US17/706,971 priority patent/US11808418B2/en
Priority to US18/165,679 priority patent/US11920750B2/en
Priority to US18/486,865 priority patent/US12228257B2/en
Priority to US18/435,661 priority patent/US12270518B2/en
Priority to US18/944,157 priority patent/US20250067406A1/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21SNON-PORTABLE LIGHTING DEVICES; SYSTEMS THEREOF; VEHICLE LIGHTING DEVICES SPECIALLY ADAPTED FOR VEHICLE EXTERIORS
    • F21S4/00Lighting devices or systems using a string or strip of light sources
    • F21S4/10Lighting devices or systems using a string or strip of light sources with light sources attached to loose electric cables, e.g. Christmas tree lights
    • F21S4/15Lighting devices or systems using a string or strip of light sources with light sources attached to loose electric cables, e.g. Christmas tree lights the cables forming a grid, net or web structure
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V23/00Arrangement of electric circuit elements in or on lighting devices
    • F21V23/001Arrangement of electric circuit elements in or on lighting devices the elements being electrical wires or cables
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V23/00Arrangement of electric circuit elements in or on lighting devices
    • F21V23/06Arrangement of electric circuit elements in or on lighting devices the elements being coupling devices, e.g. connectors
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R13/00Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
    • H01R13/62Means for facilitating engagement or disengagement of coupling parts or for holding them in engagement
    • H01R13/627Snap or like fastening
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R25/00Coupling parts adapted for simultaneous co-operation with two or more identical counterparts, e.g. for distributing energy to two or more circuits
    • H01R25/003Coupling parts adapted for simultaneous co-operation with two or more identical counterparts, e.g. for distributing energy to two or more circuits the coupling part being secured only to wires or cables
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21SNON-PORTABLE LIGHTING DEVICES; SYSTEMS THEREOF; VEHICLE LIGHTING DEVICES SPECIALLY ADAPTED FOR VEHICLE EXTERIORS
    • F21S4/00Lighting devices or systems using a string or strip of light sources
    • F21S4/10Lighting devices or systems using a string or strip of light sources with light sources attached to loose electric cables, e.g. Christmas tree lights
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21WINDEXING SCHEME ASSOCIATED WITH SUBCLASSES F21K, F21L, F21S and F21V, RELATING TO USES OR APPLICATIONS OF LIGHTING DEVICES OR SYSTEMS
    • F21W2121/00Use or application of lighting devices or systems for decorative purposes, not provided for in codes F21W2102/00 – F21W2107/00
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21WINDEXING SCHEME ASSOCIATED WITH SUBCLASSES F21K, F21L, F21S and F21V, RELATING TO USES OR APPLICATIONS OF LIGHTING DEVICES OR SYSTEMS
    • F21W2121/00Use or application of lighting devices or systems for decorative purposes, not provided for in codes F21W2102/00 – F21W2107/00
    • F21W2121/006Use or application of lighting devices or systems for decorative purposes, not provided for in codes F21W2102/00 – F21W2107/00 for illumination or simulation of snowy or iced items, e.g. icicle

Definitions

  • the present invention is generally directed to decorative lighting. More specifically, the present invention is directed to decorative lighting assemblies having a net-like structure.
  • Decorative lighting assemblies, and in particular net lights are traditionally assembled using elaborate patterns of interconnected wires and lights to form a particular desired shape or structure.
  • Net lights for example, often form rectangular or square outlines using zig-zag patterns of conductors powering incandescent or light-emitting diode (LED) lamps.
  • LED light-emitting diode
  • a decorative lighting assembly comprises a first power wire electrically connected to a first power contact and a second power wire electrically connected to a second power contact.
  • the first power wire and the second power wire cooperate to surround a display area of the decorative lighting assembly.
  • a plurality of lamp assemblies are distributed across the display area.
  • the plurality of lamp assemblies includes a first row of lamp assemblies aligned along a first line, a second row of lamp assemblies aligned along a second line, a third row of lamp assemblies aligned along a third line, and a fourth row of lamp assemblies aligned along a fourth line.
  • a first cord is disposed along a first zig-zag path connecting the lamp assemblies in the first row with the lamp assemblies in the second row.
  • a plurality of intermediate wires are disposed along a second zig-zag path connecting the lamp assemblies in the second row with the lamp assemblies in the third row.
  • a second cord is disposed along a third zig-zag path connecting the lamp assemblies in the third row with the lamp assemblies in the fourth row.
  • FIG. 1 is a plan view showing an illustrative embodiment of a decorative lighting assembly
  • FIG. 2 is a plan view showing an additional illustrative embodiment of the decorative lighting assembly shown in FIG. 1 ;
  • FIG. 3 is a plan view showing an additional illustrative embodiment of the decorative lighting assembly shown in FIG. 1 ;
  • FIG. 4 is a plan view showing an additional illustrative embodiment of the decorative lighting assembly shown in FIG. 1 ;
  • FIG. 5A is an exploded perspective view showing a power wire, an intermediate wire, and a bushing
  • FIG. 5B is a perspective view showing the second power wire, the intermediate wire, and the bushing shown in of FIG. 5A ;
  • FIG. 5C is a perspective view showing the second power wire, the intermediate wire, and the bushing shown in of FIG. 5A ;
  • FIG. 6A is an exploded perspective view showing portions of a cord and a male portion of a fastener C;
  • FIG. 6B is an additional perspective view showing the cord and the male portion the fastener shown in FIG. 6A ;
  • FIG. 6C is an exploded perspective view showing the male portion of the fastener and the female portion of the fastener shown in FIG. 6B ;
  • FIG. 6D is an exploded perspective view showing the cord and first power wire of FIG. 6C coupled by the fastener
  • FIG. 7A is a perspective view showing a connector
  • FIG. 7B is a perspective view showing a connector
  • FIG. 8A is a perspective view showing an alternate embodiment of the connector shown in FIG. 7A and FIG. 7B ;
  • FIG. 8B is a plan view of the connector shown in FIG. 8A ;
  • FIG. 9A is a perspective view showing an alternate embodiment of the connector shown in FIG. 7A and FIG. 7B ;
  • FIG. 9B is a plan view of the connector shown in FIG. 9A ;
  • FIG. 10A is an exploded perspective view showing a male portion of a connector and a female portion of the connector, a first portion of a power wire, a second portion of the power wire and an intermediate wire;
  • FIG. 10B is a partially assembled perspective view showing the male portion of the connector and the female portion of the connector shown in FIG. 10B ;
  • FIG. 10C is an assembled perspective view showing the male portion of the connector and the female portion of the connector shown in FIG. 10B ;
  • FIG. 10D is a section view further illustrating the male portion of the connector and the female portion of the connector shown in FIG. 10B .
  • FIG. 11 is a plan view showing an illustrative embodiment of a decorative lighting assembly.
  • FIG. 12 is a plan view showing an additional illustrative embodiment of the decorative lighting assembly 300 shown in FIG. 11 .
  • FIG. 13 is a plan view showing an additional illustrative embodiment of decorative lighting assembly 300 shown in FIGS. 11 and 12 .
  • FIG. 14 is a plan view showing an additional illustrative embodiment of decorative lighting assembly 300 shown in FIGS. 11-13 .
  • FIG. 15 is an enlarged plan view showing a portion of the decorative lighting assembly shown in FIG. 14 .
  • FIG. 16 is an enlarged perspective view further illustrating a portion of a decorative lighting assembly.
  • FIG. 17A is a perspective view showing one side of a lamp assembly.
  • FIG. 17B is a perspective view showing another side of the lamp assembly shown in FIG. 17A .
  • FIG. 18A is a perspective view showing one side of a lamp assembly.
  • FIG. 18B is a perspective view showing another side of the lamp assembly shown in FIG. 18A .
  • FIG. 19 is a perspective view of a reinforced decorative wire, according to an embodiment of the claimed invention.
  • FIG. 20A is a cross-sectional view of the reinforced decorative wire of FIG. 19 .
  • FIG. 20B is a cross-sectional view of the reinforced decorative wire of FIG. 19 , depicting variations in conductor and strand position caused during manufacturing.
  • FIG. 21 is a cross-sectional view of another embodiment of a reinforced decorative wire, according to an embodiment of the claimed invention.
  • FIG. 22 is a cross-sectional view of another embodiment of a reinforced decorative wire, according to an embodiment of the invention.
  • FIG. 1 is a plan view showing an illustrative embodiment of a decorative lighting assembly 100 .
  • Decorative lighting assembly 100 comprises a first power wire 102 and a second power wire 104 .
  • first power wire 102 and second power wire 104 are cooperating to surround a display area 106 of decorative lighting assembly 100 .
  • decorative lighting assembly 100 includes a plurality of lamp assemblies 108 distributed across display area 106 .
  • the plurality of lamp assemblies 108 include a first column 120 A of lamp assemblies 108 aligned along a first line 122 A, a second column 120 B of lamp assemblies 108 aligned along a second line 122 B, and a third column 120 C of lamp assemblies 108 aligned along a third line 122 C.
  • a plurality of lamp assemblies 108 of decorative lighting assembly 100 may be inter-connected by wires to form one or more electrical circuits.
  • a plurality of lamp assemblies 108 of decorative lighting assembly 100 may be mechanically coupled by cords which provide mechanical support.
  • the wires and the cords cooperate to form a net-like structure.
  • the plurality of lamp assemblies 108 include a fourth column 120 D of lamp assemblies 108 aligned along a first line 122 D and a fifth column 120 E of lamp assemblies aligned along a fifth line 122 E.
  • Decorative lighting assembly 100 of FIG. 1 includes a power plug 124 .
  • Power plug 124 may comprise a traditional power plug comprising housing 126 , first power terminal 128 A and a second power terminal 128 B for plugging into an outlet of an external power source, which may be an alternating-current (AC) power source.
  • First power wire 102 is electrically connected to first power terminal 128 A of power plug 124 .
  • Second power wire 104 is electrically connected to second power terminal 128 B of power plug 124 .
  • first power wire 102 and second power wire 104 may comprise a reinforced wire such as the reinforced wire described in issued U.S. Pat. No. 9,243,788, which is herein incorporated by reference in its entirety. Reinforced wire is depicted in FIGS. 19-22 and described herein.
  • display area 106 of decorative lighting assembly 100 has a shape generally corresponding to a four-sided polygon.
  • the shape of display area generally corresponds to a rectangle having a first long side, a second long side, a first short side, and a second short side.
  • First power wire 102 defines the first short side, the first long side, and the second short side of a rectangle in the embodiment of FIG. 1 .
  • Second power wire 104 defines the second long side of a rectangle in the embodiment of FIG. 1 .
  • FIG. 2 is a plan view showing an additional illustrative embodiment of decorative lighting assembly 100 shown in the previous figure.
  • Decorative lighting assembly 100 comprises a first power wire 102 and a second power wire 104 .
  • first power wire 102 and second power wire 104 are cooperating to surround a display area 106 of decorative lighting assembly 100 .
  • decorative lighting assembly 100 includes a plurality of lamp assemblies 108 distributed across display area 106 .
  • the plurality of lamp assemblies 108 include a first column 120 A of lamp assemblies 108 , a second column 120 B of lamp assemblies 108 , a third column 120 C of lamp assemblies 108 , and a fourth column 120 D of lamp assemblies 108 .
  • a plurality of intermediate wires 130 are disposed along a first zig-zag path 132 A connecting the lamp assemblies in first column 120 A with the lamp assemblies in second column 120 B.
  • decorative lighting assembly 100 may include a cord that is disposed along a second zig-zag path connecting the lamp assemblies in second column 120 B with the lamp assemblies in third column 120 C.
  • decorative lighting assembly 100 includes a plurality of intermediate wires 130 that are disposed along a third zig-zag path 132 C connecting the lamp assemblies in third column 120 C with the lamp assemblies in fourth column 120 D.
  • intermediate wires 130 , first power wire 102 and second power wire 104 may comprise a reinforced wire such as the reinforced wire described in issued U.S. Pat. No. 9,243,788, which is herein incorporated by reference in its entirety. Reinforced wire is depicted in FIGS. 19-22 and described herein.
  • Decorative lighting assembly 100 of FIG. 2 includes a first series circuit 134 A comprising a first lamp assembly 108 A electrically connected to first power wire 102 at a connector B 1 and an nth lamp assembly 108 N electrically connected to second power wire 104 at a connector B 2 .
  • a plurality of intermediate lamp assemblies 108 are electrically connected in series between first lamp assembly 108 A and nth lamp assembly 108 A.
  • first series circuit 134 follows a winding path between connector B 1 and connector B 2 so that the lamp assemblies 108 are distributed across display area 106 .
  • the winding path of first series circuit 134 includes a plurality of intermediate wires 130 disposed along the first zig-zag path 132 A connecting the lamp assemblies in first column 120 A with the lamp assemblies 108 in second column 120 B.
  • First series circuit 134 also includes the plurality of intermediate wires 130 disposed along third zig-zag path 132 C connecting the lamp assemblies 108 in third column 120 C with the lamp assemblies 108 in fourth column 120 D.
  • FIG. 3 is a plan view showing an additional illustrative embodiment of decorative lighting assembly 100 shown in the previous figure.
  • Decorative lighting assembly 100 comprises a first power wire 102 and a second power wire 104 .
  • first power wire 102 and second power wire 104 are cooperating to surround a display area 106 of decorative lighting assembly 100 .
  • decorative lighting assembly 100 includes a plurality of lamp assemblies 108 distributed across display area 106 .
  • the plurality of lamp assemblies 108 include a first column 120 A of lamp assemblies 108 , a second column 120 B of lamp assemblies 108 , a third column 120 C of lamp assemblies 108 , a fourth column 120 of lamp assemblies 108 , and a fifth column 120 E of lamp assemblies 108 .
  • a plurality of lamp assemblies 108 of decorative lighting assembly 100 are mechanically coupled by cords 136 which provide mechanical support.
  • a plurality of lamp assemblies 108 of decorative lighting assembly 100 may be inter-connected by wires to form one or more electrical circuits.
  • the wires and the cords cooperate to form a net-like structure.
  • Decorative lighting assembly 100 of FIG. 1 includes a cord 136 that is disposed along a second zig-zag path 132 A connecting the lamp assemblies in second column 120 B with the lamp assemblies in third column 120 C.
  • cord 136 also extends along a fourth zig-zag path 132 D connecting the lamp assemblies in fourth column 120 D with the lamp assemblies in fifth column 120 E.
  • Cord 136 is illustrated using dashed lines in FIG. 3 .
  • cord 136 may comprise a plurality of cord segments.
  • cord 136 A comprises a single cord that extends through both second zig-zag path 132 B and the fourth zig-zag path 132 D.
  • Decorative lighting assembly 100 of FIG. 3 includes a fastener C that mechanically couples a first end of cord 136 A and a second end of cord 136 A to first power wire 102 .
  • first power wire 102 extends through a passageway defined by fastener C.
  • Decorative lighting assembly 100 of FIG. 3 also includes a bushing A 2 that mechanically couples an intermediate portion of cord 136 A to second power wire 104 .
  • cord 136 A and second power wire 104 extend through a passageway defined by bushing A 2 .
  • cord 136 A extends through a passageway defined by a clip of each lamp assembly 108 in second column 120 A and each lamp assembly 108 in third column 120 C.
  • FIG. 4 is a plan view showing an additional illustrative embodiment of decorative lighting assembly 100 shown in the previous figure.
  • Decorative lighting assembly 100 comprises a first power wire 102 and a second power wire 104 .
  • first power wire 102 and second power wire 104 are cooperating to surround a display area 106 of decorative lighting assembly 100 .
  • decorative lighting assembly 100 includes a plurality of lamp assemblies 108 distributed across display area 106 .
  • the plurality of lamp assemblies 108 include a first column 120 A of lamp assemblies 108 , a second column 120 B of lamp assemblies 108 , a third column 120 C of lamp assemblies 108 , a fourth column 120 of lamp assemblies 108 , and a fifth column 120 E of lamp assemblies 108 .
  • a plurality of lamp assemblies 108 of decorative lighting assembly 100 are inter-connected by intermediate wires 130 to form electrical circuits. Also in the embodiment of FIG. 4 , a plurality of lamp assemblies 108 of decorative lighting assembly 100 are mechanically coupled by cords 136 which provide mechanical support. In the embodiment of FIG. 4 , the wires and the cords cooperate to form a net-like structure. For purposes of illustration, the cords are illustrated using dashed lines and the wires are illustrated using solid lines in FIG. 4 .
  • a plurality of intermediate wires 130 are disposed along a first zig-zag path 132 A connecting the lamp assemblies in first column 120 A with the lamp assemblies in second column 120 B.
  • decorative lighting assembly 100 includes a cord 136 A that extends along a second zig-zag path 132 B connecting the lamp assemblies in second column 120 B with the lamp assemblies in third column 120 C.
  • a plurality of intermediate wires 130 are disposed along a third zig-zag path 132 C connecting the lamp assemblies in third column 120 C with the lamp assemblies in fourth column 120 D.
  • cord 136 A extends along a fourth zig-zag path 132 D connecting the lamp assemblies in fourth column 120 D with the lamp assemblies in fifth column 120 E.
  • Cord 136 A is illustrated using dashed lines in FIG. 4 .
  • cord 136 A may comprise a plurality of cord segments.
  • cord 136 A comprises a single cord that extends through both second zig-zag path 132 B and the fourth zig-zag path 132 D.
  • Decorative lighting assembly 100 of FIG. 4 includes a fastener C that mechanically couples a first end of cord 136 A and a second end of cord 136 A to first power wire 102 .
  • first power wire 102 extends through a passageway defined by fastener C.
  • a top-most intermediate wire extends between a top-most lamp assembly in first column 120 A and a top-most lamp assembly in third column 120 C.
  • a bushing A 1 mechanically couples an intermediate portion of the first top-most intermediate wire to second power wire 104 .
  • the second power wire 104 and the top-most intermediate wire extend through a passageway defined by bushing A 1 .
  • the intermediate wires 130 have a first outer diameter
  • the cords 136 have a second outer diameter
  • the second outer diameter is substantially equal to the first outer diameter so that decorative lighting assembly 100 has a uniform appearance.
  • the first power wire comprises 18 AWG wire
  • the second power wire comprises 18 AWG wire
  • the intermediate wires comprise 22 AWG wire.
  • the first power wire comprises 18 AWG wire
  • the second power wire comprises 18 AWG wire
  • the intermediate wires comprise 22 AWG reinforced wire.
  • the first power wire comprises 18 AWG wire
  • the second power wire comprises 18 AWG wire
  • the intermediate wires comprise 25 AWG reinforced wire.
  • FIG. 5A is an exploded perspective view showing a second power wire 104 , an intermediate wire 130 , and a bushing A 1 .
  • FIG. 5B is a perspective view showing second power wire 104 , intermediate wire 130 , and bushing A 1 of FIG. 5A in an assembled state. In FIG. 5B , intermediate wire 130 and second power wire 104 can be see extending through a passageway P defined by bushing A 1 .
  • FIG. 5C is a perspective view showing a second power wire 104 , a cord 136 , and a bushing A 2 .
  • cord 136 A and second power wire 104 extend through a passageway P defined by bushing A 2 .
  • FIG. 6A is an exploded perspective view showing portions of a cord 136 A and a male portion 142 M of fastener C. A first end 140 A and a second end 140 B of cord 136 A are visible in FIG. 6A .
  • FIG. 6B is an additional perspective view showing portions of cord 136 A and male portion 142 M of fastener C.
  • first end 140 A and second end 140 B of cord 136 A are fixed to male portion 142 M of fastener C.
  • FIG. 6C is an exploded perspective view showing a male portion 142 M of fastener C and a female portion 142 F of fastener C.
  • first end 140 A and second end 140 B of cord 136 A are fixed to male portion 142 M of fastener C.
  • a first power wire 102 can be seen extending through a passageway P defined by female portion 142 F of fastener C.
  • FIG. 7A is a perspective view showing a connector B 2 .
  • a first portion 144 A of a power wire 102 , a second portion 144 B of power wire 102 and an intermediate wire 130 are electrically connected to each other by connector B 2 .
  • the embodiment of FIG. 7A also includes a cord 136 .
  • cord 136 , first portion 144 A of power wire 102 , second portion 144 B of power wire 102 , and intermediate wire 130 are all mechanically coupled to each other by connector B 2 .
  • FIG. 7B is a perspective view showing a connector B 2 .
  • connector B 2 is sectioned so that one end of cord 136 can be seen captured inside connector B 2 .
  • cord 136 , first portion 144 A of power wire 102 , second portion 144 B of power wire 102 , and intermediate wire 130 are all mechanically coupled to each other by connector B 2 .
  • First portion 144 A of a power wire 102 , a second portion 144 B of power wire 102 and an intermediate wire 130 are electrically connected to each other by connector B 2 in the embodiment of FIG. 7B .
  • FIG. 8A is a perspective view showing an alternate embodiment of connector B 2 shown in FIG. 7A and FIG. 7B .
  • FIG. 8B is a plan view showing the connector B 2 shown in FIG. 8A .
  • FIG. 9A is a perspective view showing an alternate embodiment of connector B 2 shown in FIG. 7A and FIG. 7B .
  • FIG. 9B is a plan view showing the connector B 2 shown in FIG. 9A .
  • FIG. 10B is a partially assembled perspective view showing male portion 154 M of connector B 1 and female portion 152 F of connector B 1 .
  • first portion 154 A of power wire 102 has been inserted into male portion 154 M of connector B 1 .
  • a second portion 154 B of power wire 102 and an intermediate wire 130 have been inserted into female portion 154 F of connector B 1 .
  • FIG. 10D is a section view further illustrating male portion 154 M of connector B 1 and female portion 152 F of connector B 1 .
  • FIG. 11 is a plan view showing an illustrative embodiment of a decorative lighting assembly 300 .
  • Decorative lighting assembly 300 comprises a first power wire 302 and a second power wire 304 .
  • first power wire 302 and second power wire 304 are cooperating to surround a display area 306 of decorative lighting assembly 300 .
  • decorative lighting assembly 300 includes a plurality of lamp assemblies 308 distributed across display area 306 .
  • the plurality of lamp assemblies 308 include a first row 320 A of lamp assemblies 308 aligned along a first line 322 A, a second row 320 B of lamp assemblies 308 aligned along a second line 322 B, and a third row 320 C of lamp assemblies 308 aligned along a third line 322 C.
  • a plurality of lamp assemblies 308 of decorative lighting assembly 300 may be inter-connected by wires to form one or more electrical circuits.
  • a plurality of lamp assemblies 308 of decorative lighting assembly 300 may be mechanically coupled by cords which provide mechanical support. In some embodiments, the wires and the cords cooperate to form a net-like structure.
  • the plurality of lamp assemblies 308 include a fourth row 320 D of lamp assemblies 308 aligned along a first line 322 D and a fifth row 320 E of lamp assemblies 308 aligned along a fifth line 322 E.
  • the decorative lighting assembly 300 also includes a zeroth row 320 Z of lamp assemblies 308 aligned along a zeroth line 322 Z in the embodiment of FIG. 11 .
  • display area 306 of decorative lighting assembly 300 has a shape generally corresponding to a four-sided polygon.
  • the shape of display area generally corresponds to a rectangle having a first long side, a second long side, a first short side, and a second short side.
  • First power wire 302 defines the first short side and the first long side of a rectangle in the embodiment of FIG. 11 .
  • Second power wire 304 defines the second short side and the second long side of a rectangle in the embodiment of FIG. 11 .
  • FIG. 12 is a plan view showing an additional illustrative embodiment of decorative lighting assembly 300 shown in the previous figure.
  • Decorative lighting assembly 300 comprises a first power wire 302 and a second power wire 304 .
  • first power wire 302 and second power wire 304 are cooperating to surround a display area 306 of decorative lighting assembly 300 .
  • decorative lighting assembly 300 includes a plurality of lamp assemblies 308 distributed across display area 306 .
  • the plurality of lamp assemblies 308 include a first row 320 A of lamp assemblies 308 , a second row 320 B of lamp assemblies 308 , a third row 320 C of lamp assemblies 308 , a fourth row 320 of lamp assemblies 308 , and a fifth row 320 E of lamp assemblies 308 .
  • a plurality of lamp assemblies 308 of decorative lighting assembly 300 are mechanically coupled by cords 336 which provide mechanical support.
  • a plurality of lamp assemblies 308 of decorative lighting assembly 300 may be inter-connected by wires to form one or more electrical circuits.
  • the wires and the cords cooperate to form a net-like structure.
  • a first cord 336 A is disposed along a first zig-zag path 332 A mechanically coupling the lamp assemblies 308 in the first row 320 A with the lamp assemblies 308 in the second row 320 B.
  • a second cord 336 B is disposed along a third zig-zag path 332 C mechanically coupling the lamp assemblies 308 in the third row 320 C with the lamp assemblies in the fourth row 320 D in the embodiment of FIG. 12 .
  • each cord 336 comprises a plurality of cord segments.
  • FIG. 13 is a plan view showing an additional illustrative embodiment of decorative lighting assembly 300 shown in the previous figure.
  • Decorative lighting assembly 300 comprises a first power wire 302 and a second power wire 304 .
  • first power wire 302 and second power wire 304 are cooperating to surround a display area 306 of decorative lighting assembly 300 .
  • decorative lighting assembly 300 includes a plurality of lamp assemblies 308 distributed across display area 306 .
  • the plurality of lamp assemblies 308 include a first row 320 A of lamp assemblies 308 , a second row 320 B of lamp assemblies 308 , a third row 320 C of lamp assemblies 308 , and a fourth row 320 D of lamp assemblies 308 .
  • a plurality of intermediate wires 330 are disposed along a zeroth zig-zag path 332 Z connecting the lamp assemblies 308 in the zeroth row 320 Z with the lamp assemblies 308 in the first row 320 A. Also in the embodiment of FIG. 13 , a plurality of intermediate wires 330 are disposed along a second zig-zag path 332 B connecting the lamp assemblies 308 in the second row 320 B with the lamp assemblies 308 in the third row 320 C. A plurality of intermediate wires 330 disposed along a fourth zig-zag path 332 D connecting the lamp assemblies 308 in the fourth row 320 D with the lamp assemblies 308 in the fifth row 320 E in the embodiment of FIG. 13 .
  • intermediate wires 330 , first power wire 302 and second power wire 304 may comprise a reinforced wire such as the reinforced wire described in issued U.S. Pat. No. 9,243,788, which is herein incorporated by reference in its entirety. Reinforced wire is depicted in FIGS. 19-22 and described herein.
  • Decorative lighting assembly 300 of FIG. 13 includes a first series circuit 334 A comprising a plurality of lamp assemblies 308 and intermediate wires 330 connected between the first power wire 304 and second power wire 306 .
  • the first series circuit 334 A includes a plurality of intermediate wires 330 disposed along a zeroth zig-zag path 332 Z connecting the lamp assemblies 308 in the zeroth row 320 Z with the lamp assemblies 308 in the first row 320 A.
  • a zeroth connector 398 Z electrically connects a first end of the first series circuit 334 A to the first power wire 304 and a second connector 398 B electrically connects a second end of the first series circuit 334 A to the second power wire 306 .
  • Decorative lighting assembly 300 of FIG. 13 also includes a second series circuit 334 B comprising a plurality of lamp assemblies 308 and intermediate wires 330 connected between the first power wire 304 and second power wire 306 .
  • a third series circuit 334 C of decorative lighting assembly 300 can also be seen in FIG. 13 .
  • the third series circuit 334 C comprises a plurality of lamp assemblies 308 and intermediate wires 330 connected between the first power wire 304 and second power wire 306 .
  • the second series circuit 334 B includes a plurality of intermediate wires 330 disposed along the second zig-zag path 332 B connecting the lamp assemblies 308 in the second row 320 B with the lamp assemblies 308 in the third row 320 C.
  • the third series circuit 334 C includes a plurality of intermediate wires 330 disposed along the fourth zig-zag path 332 D connecting the lamp assemblies 308 in the fourth row 320 D with the lamp assemblies 308 in the fifth row 320 E.
  • a first connector 398 A electrically connects a first end of the second series circuit 334 B to the first power wire 304 and a fourth connector 398 D electrically connects a second end of the second series circuit 334 B to the second power wire 306 .
  • a third connector 398 C electrically connects a first end of the third series circuit 334 B to the first power wire 304 and a fifth connector 398 E electrically connects a second end of the third series circuit 334 B to the second power wire 306 .
  • FIG. 14 is a plan view showing an additional illustrative embodiment of decorative lighting assembly 300 shown in the previous figure.
  • Decorative lighting assembly 300 comprises a first power wire 302 and a second power wire 304 .
  • first power wire 302 and second power wire 304 are cooperating to surround a display area 306 of decorative lighting assembly 300 .
  • decorative lighting assembly 300 includes a plurality of lamp assemblies 308 distributed across display area 306 .
  • the plurality of lamp assemblies 308 include a zeroth row 320 Z of lamp assemblies 308 , a first row 320 A of lamp assemblies 308 , a second row 320 B of lamp assemblies 308 , a third row 320 C of lamp assemblies 308 , a fourth row 320 of lamp assemblies 308 , and a fifth row 320 E of lamp assemblies 308 .
  • a plurality of lamp assemblies 308 of decorative lighting assembly 300 are inter-connected by intermediate wires 330 to form electrical circuits. Also in the embodiment of FIG. 14 , a plurality of lamp assemblies 308 of decorative lighting assembly 300 are mechanically coupled by cords 336 which provide mechanical support. In the embodiment of FIG. 14 , the wires and the cords cooperate to form a net-like structure.
  • a plurality of intermediate wires 330 are disposed along a zeroth zig-zag path 332 Z connecting the lamp assemblies 308 in the zeroth row 320 Z with the lamp assemblies 308 in the first row 320 A.
  • a first cord 336 A is disposed along a first zig-zag path 332 A mechanically coupling the lamp assemblies 308 in the first row 320 A with the lamp assemblies 308 in the second row 320 B in the embodiment of FIG. 14 .
  • a plurality of intermediate wires 330 are disposed along a second zig-zag path 332 B connecting the lamp assemblies 308 in the second row 320 B with the lamp assemblies 308 in the third row 320 C.
  • a second cord 336 B is disposed along a third zig-zag path 332 C mechanically coupling the lamp assemblies 308 in the third row 320 C with the lamp assemblies in the fourth row 320 D in the embodiment of FIG. 14 .
  • a plurality of intermediate wires 330 disposed along a fourth zig-zag path 332 D connecting the lamp assemblies 308 in the fourth row 320 D with the lamp assemblies 308 in the fifth row 320 E in the embodiment of FIG. 14 .
  • Decorative lighting assembly 300 of FIG. 14 includes a first series circuit 334 A comprising a plurality of lamp assemblies 308 and intermediate wires 330 connected between the first power wire 304 and second power wire 306 .
  • the first series circuit 334 A includes a plurality of intermediate wires 330 disposed along a zeroth zig-zag path 332 Z connecting the lamp assemblies 308 in the zeroth row 320 Z with the lamp assemblies 308 in the first row 320 A.
  • a zeroth connector 398 Z electrically connects a first end of the first series circuit 334 A to the first power wire 304 and a second connector 398 B electrically connects a second end of the first series circuit 334 A to the second power wire 306 .
  • Decorative lighting assembly 300 of FIG. 14 also includes a second series circuit 334 B comprising a plurality of lamp assemblies 308 and intermediate wires 330 connected between the first power wire 304 and second power wire 306 .
  • a third series circuit 334 C of decorative lighting assembly 300 can also be seen in FIG. 14 .
  • the third series circuit 334 C comprises a plurality of lamp assemblies 308 and intermediate wires 330 connected between the first power wire 304 and second power wire 306 .
  • the second series circuit 334 B includes a plurality of intermediate wires 330 disposed along the second zig-zag path 332 B connecting the lamp assemblies 308 in the second row 320 B with the lamp assemblies 308 in the third row 320 C.
  • the third series circuit 334 C includes a plurality of intermediate wires 330 disposed along the fourth zig-zag path 332 D connecting the lamp assemblies 308 in the fourth row 320 D with the lamp assemblies 308 in the fifth row 320 E.
  • a first connector 398 A electrically connects a first end of the second series circuit 334 B to the first power wire 304 and a fourth connector 398 D electrically connects a second end of the second series circuit 334 B to the second power wire 306 .
  • a third connector 398 C electrically connects a first end of the third series circuit 334 B to the first power wire 304 and a fifth connector 398 E electrically connects a second end of the third series circuit 334 B to the second power wire 306 .
  • FIG. 15 is an enlarged plan view showing a portion of the decorative lighting assembly 300 shown in the previous figure.
  • the portion of decorative lighting assembly 300 shown in FIG. 15 includes a zeroth row 320 Z of lamp assemblies 308 , a first row 320 A of lamp assemblies 308 , a second row 320 B of lamp assemblies 308 and a third row 320 C of lamp assemblies 308 .
  • a plurality of intermediate wires 330 are disposed along a zeroth zig-zag path 332 Z connecting the lamp assemblies 308 in the zeroth row 320 Z with the lamp assemblies 308 in the first row 320 A.
  • a first cord 336 A is disposed along a first zig-zag path 332 A mechanically coupling the lamp assemblies 308 in the first row 320 A with the lamp assemblies 308 in the second row 320 B in the embodiment of FIG. 15 .
  • a plurality of intermediate wires 330 are disposed along a second zig-zag path 332 B connecting the lamp assemblies 308 in the second row 320 B with the lamp assemblies 308 in the third row 320 C.
  • a first loop of wire is fixed to each of the lamp assemblies 308 in the first row 320 A.
  • a second loop of wire is also fixed to each of the lamp assemblies 308 in the first row 320 A.
  • the first cord 336 A can be seen extending through the first and second loops of wire fixed to each of the lamp assemblies 308 in the second row first row 320 A.
  • FIG. 16 is an enlarged perspective view further illustrating a portion of a decorative lighting assembly 300 .
  • the portion of decorative lighting assembly 300 shown in FIG. 16 includes a plurality of lamp assemblies 308 distributed across a display area 306 .
  • the plurality of lamp assemblies 308 include a first row 320 A of lamp assemblies 308 aligned along a first line 322 A, a second row 320 B of lamp assemblies 308 aligned along a second line 322 B, a third row 320 C of lamp assemblies 308 aligned along a third line 322 C, and a fourth row 320 D of lamp assemblies 308 aligned along a fourth line 322 D.
  • a plurality of intermediate wires 330 are disposed along a zeroth zig-zag path 332 Z connecting the lamp assemblies 308 in the zeroth row 320 Z with the lamp assemblies 308 in the first row 320 A.
  • a first cord 336 A is disposed along a first zig-zag path 332 A mechanically coupling the lamp assemblies 308 in the first row 320 A with the lamp assemblies 308 in the second row 320 B in the embodiment of FIG. 16 .
  • a plurality of intermediate wires 330 are disposed along a second zig-zag path 332 B connecting the lamp assemblies 308 in the second row 320 B with the lamp assemblies 308 in the third row 320 C.
  • a second cord 336 B is disposed along a third zig-zag path 332 C mechanically coupling the lamp assemblies 308 in the third row 320 C with the lamp assemblies in the fourth row 320 D in the embodiment of FIG. 16 .
  • a plurality of intermediate wires 330 disposed along a fourth zig-zag path 332 D connecting the lamp assemblies 308 in the fourth row 320 D with the lamp assemblies 308 in the fifth row 320 E in the embodiment of FIG. 16 .
  • FIG. 17A is a perspective view showing one side of a lamp assembly 308 .
  • FIG. 17B is a perspective view showing another side of the lamp assembly 308 shown in FIG. 17A .
  • FIG. 17A and FIG. 17B may be collectively referred to as FIG. 17 .
  • a connection 396 is formed between the lamp assembly 308 and a cord 336 .
  • the connection 396 comprises a portion of the cord 336 that is extending through a tortuous path 394 defined by the lamp assembly 308 .
  • a portion of the cord 336 extends through a first lumen 392 A and a second lumen 392 B defined by the housing of the lamp assembly 308 .
  • a bight 390 of the cord 336 extends along the outside surface of the housing between the first lumen 392 A and the second lumen 392 B.
  • a first bend 389 A is formed in the cord 336 between the first lumen 392 A and the bight 390 .
  • a second bend 389 B is formed in the cord 336 between the second lumen 392 B and the bight 390 .
  • FIG. 18A is a perspective view showing one side of a lamp assembly 308 .
  • FIG. 18B is a perspective view showing another side of the lamp assembly 308 shown in FIG. 18A .
  • FIG. 18A and FIG. 18B may be collectively referred to as FIG. 18 .
  • a connection 396 is formed between the lamp assembly 308 and a cord 336 .
  • the connection 396 comprises a portion of the cord 336 that is extending through a tortuous path 394 defined by the lamp assembly 308 .
  • a portion of the cord 336 extends through a first lumen 392 A and a second lumen 392 B defined by the housing of the lamp assembly 308 .
  • a bight 390 of the cord 336 extends along the outside surface of the housing between the first lumen 392 A and the second lumen 392 B.
  • a first bend 389 A is formed in the cord 336 between the first lumen 392 A and the bight 390 .
  • a second bend 389 B is formed in the cord 336 between the second lumen 392 B and the bight 390 .
  • reinforced decorative-lighting wire or cord 1100 includes one or more reinforcing strands or threads 1102 , one or more conductor strands 1104 , and insulating layer or jacket 1106 .
  • Conductor strands 1104 may form one or more layers, such as the depicted first conductor layer 1108 and second conductor layer 1110 .
  • reinforcing strands 1102 and conductor strands 1104 may be arranged in a variety of manners, and in a variety of quantities, dependent upon a number of factors, including desired wire properties, including, but not limited to, tensile strength, resistivity and conductivity.
  • Reinforced decorative-lighting wire 1100 may comprise a variety of sizes, resistances, and ampacities, and may be described in terms of electrically-equivalent wire gauge standards, e.g., 20 AWG (American Wire Gauge), 22 AWG, 24 AWG, etc.
  • wire 1100 may comprise a conductive equivalent to a wire normally described as a 22 AWG wire having an equivalent cross sectional area of conductive copper of approximately 0.326 mm2 and having a typical resistance of approximately 52.96 ohms/km, though the overall diameter of the complete wire may be greater than a standard 22 AWG wire due to the additional reinforcing strands.
  • Reinforced decorative-lighting wire 1100 may also be described in terms of other equivalent wire standards, such as Underwriter's Laboratories Standard UL 62 insofar as it pertains to decorative-lighting wire, including standards directed to Type XTW or Type CXTW as typically used in decorative-lighting applications.
  • an embodiment of a reinforced decorative-lighting wire 1100 may be designed to include characteristics equivalent to selected characteristics of an 18, 20 22, 25, or 25 AWG CXTW wire, particularly conductive characteristics such as DC resistance per conductor strand, and insulative characteristics.
  • an embodiment of reinforced decorative-lighting wire 1100 comprises a single reinforcing strand 1102 , and multiple conductor strands 1104 .
  • conductor strands 1104 form two layers: first conductor layer 1108 and second layer 1110 , though it will be understood that conductors 1104 may form one, two, or more than two layers.
  • Layers 1108 and 1110 form a stranded conductor of reinforced wire 1100 .
  • a reinforced wire 1100 having the stranded conductor comprising multiple conductor strands 1104 may also be referred to as a “single” conductor reinforced wire 1100 to differentiate from standard twisted pairs of wires typically used in decorative lighting.
  • pairs of single-conductor reinforced wires 1100 may be twisted about one another to form reinforced twisted-pair wire sets.
  • reinforcing strand 1102 extends axially along a length of wire 1100 , and along central wire Axis A, surrounded by, or adjacent to, conductor strands 1104 . In an embodiment, reinforcing strand 1102 is generally located radially at a center of wire 1100 .
  • Reinforcing strand 1102 may define a generally cylindrical shape defining a circular cross-sectional area, though the cross-sectional area may define other shapes, such as square, oval, rectangular, and so on. In other embodiments, and as will be described further below with respect to FIG. 20B , reinforcing strand 1102 may define a generally circular cross-sectional shape prior to assembly into wire 1100 , but then define a different, shape, such as an asymmetrical shape, after a manufacturing assembly process.
  • central reinforcing strand 1102 comprises one or more fibers or strands of fibrous reinforcing material.
  • reinforcing strand 1102 comprises a single strand or fiber of reinforcing material.
  • reinforcing strand 1102 comprises multiple strands of reinforcing material that may comprise twisted strands, threads or fibers such that reinforcing strand 1102 comprises a yarn of multiple strands or fibers.
  • reinforcing strand 1102 comprises a single 1500 Denier fiber having an outside diameter of approximately 0.45 mm.
  • reinforcing strand 1102 comprises a fiber ranging from 500 Denier to 2500 Denier.
  • reinforcing strand 1102 may comprise a larger or smaller diameter and/or greater or lesser Denier fiber depending on the properties of the reinforcing material and desired reinforcing properties.
  • reinforcing strand 1102 comprises a single or multi-fiber strand sized to be within the range of 1000 to 1500 Denier. Reinforced wire 1100 with reinforcing strands 1102 comprising such a size may provide appropriate reinforcing strength for wires 1100 that most decorative lighting applications that would typically use an 118-24 AWG standard wire.
  • the reinforcing material of reinforcing strand 1102 may comprise a generally non-conductive or nonmetallic material, such as a plastic or polymer, including a polyester or polyethylene (PE) material.
  • reinforcing strand 1102 comprises a polyethylene terephthalate (PET) material.
  • PET polyethylene terephthalate
  • Other reinforcing materials may include, though will not be limited to, polystyrene, polyvinyl chloride (PVC), polyamide (PA), and so on.
  • Reinforcing strand 1102 may consist entirely or substantially of a non-conductive or nonmetallic material, such as PET, though in some embodiments, reinforcing strand 1102 may comprise a composite material.
  • Such a composite material may comprise a non-conductive material, such as PET, as well as some other conductive, partially-conductive, or other non-conductive material.
  • reinforcing strand 1102 comprises a substantially solid structure in cross section (radially), as compared to a hollow core strand such as a pipe or other annular shape. Further, in an embodiment, reinforcing strand 1102 comprises the same material continuously along its axial length. In an embodiment, reinforcing strand 1102 may have a hardness that is less than a hardness of a conductor strand 1104 . In an embodiment, reinforcing strand 1102 has a Rockwell hardness of R 117 .
  • reinforcing strand 1102 comprises primarily a PET material, having a specific gravity ranging from 1380-1405 kg/m3, and a melting point of 200-250 degrees Celsius. In other embodiments, reinforcing strand 1102 comprises a polymer having a specific gravity that ranges from 1000-2000 kg/m3, and a melting point of 1150-300 degrees Celsius. Material in such a range may provide an appropriate balance of strength and flexibility for decorative light string applications. Further, as will be explained further below, such properties allow for deformation of reinforcing strand 1102 during the manufacturing assembly process.
  • strand 1102 comprises an elongation at break of 300%, or may comprise an elongation range of 200% to 400%, and a tensile strength of 55 MPa (7,977 psi).
  • tensile strength refers to its ordinary meaning as understood in the field of conductive wires, including tensile strength being the maximum amount of stress that wire 1100 can withstand before failing or breaking, while being stretched or pulled axially along axis A (along a length of wire 1100 ) by opposing axial forces labeled F 1 and F 2 in FIG. 19 .
  • an elongation property of strand 1102 ranges from 200% to 400%, and a tensile strength ranges from 45 to 65 MPa.
  • the elongation of strand 1102 may be less than an elongation of conductor strand 1104 .
  • the elongation of a strand 1102 may be approximately the same as, or greater than, a conductor strand 1104 .
  • the tensile strength of a strand 1102 may be less than the tensile strength of a conductor strand 1104 .
  • the tensile strength may be approximately the same as, or greater than, a conductor strand 1104 .
  • the elongation of a strand 1102 may be less than the overall elongation of reinforced wire 1100 . In another embodiment, the elongation may be approximately the same as, or greater than, reinforced wire 1100 . In an embodiment, the tensile strength of a strand 1102 may be less than the overall tensile strength of reinforced wire 1100 . In another embodiment, the tensile strength may be approximately the same as, or greater than, reinforced wire 1100 .
  • Conductor strands 1104 may comprise any number of known conductive materials, including metals and metal alloys, such as copper, aluminum, steel, nickel, aluminum, and so on. Embodiments of alloys may include copper aluminum alloy, copper steel alloy, and so on. In an embodiment, one or more conductor strands comprise soft-annealed copper strands, which may be uncoated, or in some embodiments, coated with tin. Conductor strands 1104 comprised of copper, including comprised primarily of copper, provide not only superior tensile strength, but also superior ductility properties as compared to conductor strands 1104 comprising other metals, such as aluminum.
  • stranded conductors commonly used in overhead power line applications typically rely on aluminum conductors having low ductility, resulting in low elongation. In such an application, sagging of the heavy power lines/conductors is a concern, and the desirable low ductility or inability to elongate, is an important consideration.
  • wire 1100 may be advantageous.
  • wire 1100 when subjected to a tensile stress or force, wire 1100 may elongate rather than break, thereby preventing exposure of conductor strands 1104 , and preventing a potentially hazardous situation. Elongation properties of reinforced decorative lighting wire 1100 are discussed further below.
  • properties of high tensile strength, flexibility, and the ability to stretch or elongate when subjected to axial pulling may be advantageous for reinforced wire 1100 when applied to a decorative lighting apparatus.
  • wires used in decorative lighting applications tend to be supported over much of their length.
  • decorative light strings applied to trees, such as Christmas trees are generally affixed to the branches of the tree and are well supported, with only very short runs of wire that are unsupported.
  • extremely long lengths of wire are unsupported between power poles. Consequently, the materials and properties of cables and wires for such power transmission applications may be significantly different than those of reinforced decorative lighting wire 1100 as described herein.
  • tensile strength of conductor strands 1104 and associated conductor layers 1106 and 1108 remains a consideration.
  • a tensile strength of each copper strand 1104 will have a higher tensile strength, for example, ranging from 200-250 N/mm2, as compared to aluminum alloys, for example, 100 N/mm2.
  • each conductor strand 1104 has a tensile strength that is less than a tensile strength of reinforcing strand 1102 .
  • conductor strands 1104 comprise a copper material, and reinforcing strand 1102 comprises PET.
  • each conductor strand 1104 comprises a continuous, solid-core strand, though the entire wire 1100 comprises a multi-stranded wire.
  • each conductor strand 1104 may comprise multiple, individual strands. In an embodiment, all strands have approximately the same average diameter.
  • individual conductor strands comprise 27 to 36 AWG copper conductor strands.
  • conductor strands comprise 27 AWG strands.
  • conductor strands comprise copper strands having diameters measuring, on average, 0.16 mm (34 AWG, or 0.16 AS).
  • copper strands comprise other diameters, including strands that have average diameters of 0.16 mm, or average diameters of approximately 0.16 mm, such as 0.16 mm+/ ⁇ 10%.
  • average diameters of copper strands used in a single wire 1100 range from 0.15 mm to 0.16 mm, or in another embodiment 0.25 mm+/ ⁇ 10%.
  • Conductor strands 1104 may comprise copper strands complying with ASTM B 3-90 standards.
  • Conductor strands 1104 extend axially along Axis A, and may or may not be twisted about reinforcing strand 1102 or other conductor strands 1104 .
  • Conductor strands 1104 may generally be cylindrical, presenting a generally circular cross section, though in other embodiments, each strand 1104 may present other cross-sectional shapes.
  • the number of conductor strands 1104 may vary based on a combination of factors, including desired conductive properties, and mechanical design characteristics. For example, for a 22 AWG equivalent wire, which in the decorative lighting industry may typically comprise 116 copper strands, reinforced decorative-lighting wire 1100 may also comprise 116 conductor strands. In another embodiment reinforced wire 1100 may be equivalent to 25 AWG in its current-carrying capability (maximum of 0.73 A), and may comprise 8 conductor strands, which in an embodiment comprises (8) 0.16 mm diameter strands.
  • reinforced wire 1100 may include 8-10 conductor strands 1104 ; in an embodiment, each conductor strand 1104 may have a diameter averaging 0.16 mm, or alternatively, 0.157-0.154 mm.
  • reinforced wire 1100 may include 8 conductor strands 1104 ; in an embodiment, each conductor strand 1104 may have a diameter averaging 0.16 mm, or alternatively, 0.157-0.154 mm.
  • the above configurations of strands 1104 may be combined with polymer reinforcing strands 1102 sized to fall within a range of 1000 to 1500 Denier.
  • the number of conductor strands 1104 may be greater or fewer than that of an equivalent wire having similar conductive properties, though it will be understood that particular embodiments of wire 1100 are intended to match the electrical or conductive properties of equivalent standard wires described by the American Wire Gauge standard, e.g., 22 AWG wire, such that even if the number of strands is not equal to the number of strands in an equivalent standard wire, the size of each conductor strand 1104 will be increased or decreased to maintain electrical equivalence.
  • An embodiment of a reinforced decorative wire 1100 having electrical properties similar or equivalent to a 22 AWG wire will be described below to further clarify and emphasize the above.
  • first conductor layer 1108 is formed of multiple conductor strands 1104 twisted about centrally-positioned reinforcing fiber 1102 .
  • first conductor layer 1108 comprises five conductor strands 1104 .
  • first conductor layer 1108 comprises more or fewer strands.
  • the number of strands 1104 in first conductor layer 1108 ranges from three strands to eight strands.
  • Strands 1104 extend axially along Axis A and in an embodiment, are twisted about reinforcing strand 1102 . As depicted, strands 1104 are helically twisted about reinforcing strand 1102 in a counter-clockwise direction, though in other embodiments, strands 1104 may be twisted or wrapped about reinforcing wire 1102 in a clockwise direction.
  • FIGS. 19, 20A and 20B Central axes of conductor strands 1104 are depicted in FIGS. 19, 20A and 20B by arrows B 1 ′-B 5 (first layer 1108 ) and C 1 -C 11 (second layer 1110 ).
  • the twist or “pitch” of conductor strands 1104 may be defined by a “length of lay”, or the length of conductor strand 1104 required to turn a full rotation, or turn 360 degrees.
  • wire 1100 of the claimed invention may have lesser lengths of lay when the same number of conductor strands 1104 are used.
  • a length of lay of a conductor strand 1104 of first layer 1108 is approximately 118.5 mm, as compared to approximately 32 mm for an equivalent standard 22 AWG wire commonly used for decorative lighting.
  • the additional twists per unit of length, or decreased length of lay provides axial reinforcing strength in addition to the reinforcing strength added by reinforcing strands 1102 .
  • the shorter length of lay may allow further stretching and elongation of wire 1100 without breakage when subjected to axial opposing forces, such as F 1 and F 2 as depicted in FIG. 19 .
  • conductor strands 1104 of layer 1108 each have an approximately equal length of lay, though in other embodiments, including some described further below, conductor strands 1104 may have different lengths of lay.
  • wire 1100 may allow for some slight radial compression of strands 1102 by conductor strands 1104 when wire 1100 is subjected to axial forces. This provides the added advantage of allowing wire 1100 to elongate even further than a typical decorative lighting wire of a similar wire gauge and ampacity.
  • Second conductor layer 1110 is formed on first conductor layer 1108 , and also comprises a plurality of conductor strands 1104 .
  • second conductor layer 1110 comprises eleven conductor strands 1104 .
  • second conductor layer 1110 comprises more or fewer strands 1104 .
  • the number of conductor strands 1104 in second layer 1110 ranges from four strands to 30 strands.
  • Strands 1104 extend axially along Axis A, and are adjacent strands 1104 of first layer 1108 .
  • strands 1104 of second layer 1110 are adjacent to, and twisted about first layer 1108 .
  • strands 1104 are twisted about layer 1108 and its strands 1104 in a counter-clockwise direction.
  • conductor strands 1104 of second conductor layer 1110 twists in the same direction as the direction that conductor strands 1104 of second conductor layer 1108 twist.
  • strands 1104 may be twisted over layer 1108 in a clockwise direction, and may twist in a direction opposite to a twist direction of first conductor layer 1110 .
  • Strands 1104 forming conductor layer 1108 generally are positioned adjacent one another.
  • conductor strands 1104 of layer 1110 each have an approximately equal length of lay, though in other embodiments, including some described further below, conductor strands 1104 may have different lengths of lay.
  • Insulating layer (or jacket) 1106 wraps about second conductive layer 1110 , covering and insulating conductor strands 1104 and reinforcing strand 1102 .
  • Insulating layer 1106 may comprise any of a variety of known insulating materials, including polymers such as PVC, PE, thermoplastics, and so on. In addition to providing insulative properties, insulating layer 1106 may add mechanical strength through its other properties. In an embodiment, insulating layer 1106 has a minimum elongation percentage of 150%. In an embodiment, insulating layer 1106 comprises a polymer having a composition different than the polymer comprising reinforcing strand 1102 .
  • wire 1100 comprises a reinforced 22 AWG-electrically-equivalent wire comprising a single reinforcing strand 1102 extending axially along a center of wire 1100 , surrounded by 116 twisted conductor strands 1104 , and overlaid with an insulating jacket layer 1106 .
  • the 116 conductor strands 1104 comprise first conductive layer 1108 , consisting of 5 conductive strands 1104 , and second conductive layer 1110 , consisting of 11 conductive strands 1104 .
  • reinforcing strand 1102 comprises PET material in the form of a 11500 Denier strand; conductive strands 1104 comprise primarily copper; and insulating layer 1106 comprises PVC.
  • Each conductive strand 1104 defines an approximately 0.16 mm diameter, circular or round wire, such that the equivalent cross-sectional area of the conductive portion of wire 1100 is approximately the same as a standard 22 AWG wire, also denoted as 116/0.16 AS, meaning 116 strands of 0.16 mm diameter conductor strands.
  • the resistivity ranges from 54 to 57 ohms/km. In an embodiment, the resistivity is 56.8 ohms/km or less. In an embodiment, the resistivity is substantially 55 ohms/km.
  • the length of lay, sometimes referred to as lay of strand, of each conductor strand 1104 of first layer 1108 in an embodiment is 32 mm or less. In an embodiment, the length of lay of conductor strand 1104 of first layer 1108 ranges from 15 mm to 25 mm. In an embodiment, the length of lay of conductor strands 1104 of first layer 1108 is approximately 18.5 mm. In an embodiment the length of lay of all conductor strands 1104 of first layer 1108 are approximately the same.
  • a lineal length of each strand per unit length is within 5% of an average lineal length (note: the lineal length of a strand will be longer than a unit length due to the helical twisting of a wire, e.g., a 1 foot length of wire 1100 will include strands 1104 having lineal lengths longer than 1 ft.
  • the lineal length of individual strands 1104 may vary more substantially per unit length of wire 1100 , particularly when lengths of lay of individual strands 1104 are allowed to vary from strand to strand.
  • the length of lay of conductor strands 1104 of second conductive layer 1110 may be the same as conductor strands 1104 of first conductor layer 1108 , or in some embodiments, may be different. In an embodiment a length of lay of conductor strands 1104 of second layer 1110 is 32 mm or less. In an embodiment, the length of lay of conductor strand 1104 of second layer 1110 ranges from 15 mm to 25 mm. In an embodiment, the length of lay of conductor strands 1104 of second layer 1110 is substantially 18.5 mm. In an embodiment, lengths of lay of conductor strands 1104 of both layers 1108 and 1110 are, on average, approximately 18.5 mm. In an embodiment, the direction of twisting is the same, as depicted in FIG. 19 .
  • insulation layer 1106 comprising primarily PVC material, has a minimum thickness of 0.69 mm.
  • insulation 1106 comprises a thickness ranging from 0.69 mm to 1.0 mm.
  • an average thickness of insulating layer 1106 has an average thickness of 0.76 mm or greater.
  • insulating layer 1106 has an average thickness of 0.84.
  • insulating layer 1106 has an insulation resistance of at least 225 M ⁇ /Kft.
  • the overall diameter of wire 1100 in 22 AWG ranges from 2.40 to 2.70 mm. In an embodiment, an average overall diameter is approximately 2.6 mm; in an embodiment, an average overall wire 1100 diameter is 101 mil.
  • wire 1100 has an elongation of 150% or greater. In an embodiment, the elongation of wire 1100 ranges from 150% to 400%. In one embodiment, wire 1100 exhibits 300% elongation, significantly longer than standard, all-copper multi-stranded 22 AWG CXTW wire.
  • embodiments of wire 1100 have an improved tensile strength, which in one embodiment includes a tensile strength of 1,500 PSI or greater.
  • the tensile strength ranges from 1,500 PSI to 4,000 PSI, in another embodiment, the tensile strength ranges from 2,500 to 3,500 PSI. Such a range may provide sufficient strength for various decorative lighting applications, including trees, net lights, sculptures, and so on.
  • a required tensile strength may be on the lower end of the range, while wires of light strings that are not affixed to, or are less supported, may require higher tensile strength due to possible pulling or yanking by a user.
  • reinforced wire 1100 may withstand axial pulling forces of various ranges depending on the particular reinforced wire 1100 configuration.
  • reinforced wire 1100 may withstand a minimum axially-applied pulling force ranging from 22 lbf to 46 lbf.
  • reinforced wire 1100 comprises an ampacity equivalent to a 22 AWG wire, and can withstand a minimum 22.4 lbf without breaking; in another embodiment, reinforced wire 1100 comprises an ampacity equivalent to a 20 AWG wire, and can withstand a minimum 30 lbf without breaking; in another embodiment, reinforced wire 1100 comprises an ampacity equivalent to a 18 AWG wire, and can withstand a minimum 46 lbf without breaking.
  • reinforced wire 1100 comprises 7-10 conductor strands 1104 defining a range of minimum axial pulling force ranging from 22.4 lbf to 46 lbf.
  • reinforced wire 1100 comprises 8 conductor strands and has a minimum axial pulling force at breakage of 46 lbf; in one such embodiment, each conductor strand 1104 may have an average diameter in the range of 0.15 mm to 0.17 mm; alternatively, each conductor strand 1104 may have an average diameter of 0.154 mm to 0.157 mm.
  • Such ranges accommodate expected current flows in various decorative lighting applications, while offering substantial overall tensile strength.
  • wire 1100 includes a 1500 Denier PET reinforcing strand 1102 extending axially along Axis A, 16 copper conductor strands of 0.16 mm average diameter (5 first layer 1108 strands and 11 second layer 1110 strands) having a 55 ⁇ /km resistivity, and insulating layer 1106 of PVC material.
  • elongation is greater than 300% (in an embodiment is 306%), with a tensile strength of 2800 PSI, requiring a force of approximately 21 kg to break.
  • Such a wire may be used as a substitute for standard 22 AWG wire, including 22 AWG CXTW wire for improved decorative-lighting applications.
  • the wire 1100 of FIGS. 19 and 20A is depicted again, but in this case, the configuration of wire 1100 , namely the relative positions of conductor strands 1104 and reinforcing strand 1102 , are somewhat different.
  • reinforcing strand 1102 may be deformed somewhat, which in turn, may cause first and second layer strands 1108 and 1110 to move relative to one another, and relative to reinforcing strand 1102 .
  • first and second layer strands 1108 and 1110 may move relative to one another, and relative to reinforcing strand 1102 .
  • reinforcing strand 1102 does not comprise a circular cross section, but rather, comprises another shape due to deformation.
  • Such “deformation” may actually be the result of radial displacement of individual strands or fibers of reinforcing strand 1102 that occur when layers of conductor strands 1104 are wound or twisted about generally central reinforcing strand 1102 .
  • Such variation may be caused by radial movement or deformation of reinforcing strand 1102 and may vary axially, or along a length of wire 1100 . Consequently, while FIG. 20A depicts an ideal embodiment of wire 1100 in cross section, in other embodiments wire 1100 may comprise the relative structure depicted in FIG. 20B , or some other similar structure.
  • embodiments of reinforced decorative wire 1100 may include a central reinforcing strand that may only be substantially, or mostly centrally located. Further, in such an embodiment, conductor strands 1104 may not be evenly spaced about reinforcing strand 1102 , as depicted, nor will strands 1104 of layer 1110 be evenly spaced about layer 1108 .
  • embodiments of wire 1100 are not limited to the 1-5-11 configuration described above (1 reinforcing strand 1102 , 5 first layer conductors 1105 and 11 second layer conductors 1110 ).
  • embodiments of reinforced wire 1100 may comprise multi-layer conductor strand embodiments, such as those depicted in FIGS. 19-20B , embodiments of reinforced wire 1100 may include only a single layer of conductor strands 1104 and a single reinforcing strand 1102 .
  • 10 conductor strands 1104 with a single reinforcing strand 1102 which in an embodiment includes 0.15-0.16 mm diameter strands 1104 and 1000 Denier strand 1102 ;
  • 9 conductor strands 1104 with a single reinforcing strand 1102 which in an embodiment includes 0.15-0.16 mm diameter strands 1104 and 1000 Denier strand 1102 ;
  • 7 conductor strands 1104 with a single reinforcing strand 1102 which in an embodiment includes 0.15-0.16 mm diameter strands 1104 and 1500 Denier strand 1102 .
  • a larger diameter and stronger reinforcing strand 1102 may be included to make up for the decrease in tensile strength due to fewer conductor strands 1104 .
  • wire 1100 includes three reinforcing strands 1102 a , 1102 b , and 1102 c .
  • Reinforcing strands 1102 a - 102 c extend axially through the center portion of wire 1102 .
  • Strands 1102 a - 102 c may or may not be twisted about one another. Twisting multiple strands 1102 may provide an additional reinforcing strength.
  • fewer than three strands 1102 namely two strands may be used. In other embodiments, greater than three strands 1102 may be used.
  • the cross-sectional area of the three reinforcing strands 1102 a , 1102 b , and 1102 c is equivalent to the 1500 Denier strand described above with respect to the embodiment of FIGS. 19, 20A and 20B .
  • the size of reinforcing strands 1102 may be larger or smaller, depending on desired wire 1100 strength, with larger size strands and/or more strands 1102 being used for stronger reinforced wire 1100 .
  • wire 1100 still includes multiple reinforcing strands 1102 , first conductor layer 1108 comprising multiple conductors 1104 , second conductor layer 1110 comprising multiple conductors 1104 , and outer insulating layer 1106 .
  • first conductor layer 1108 includes five conductors 1104 and second conductor layer 1110 includes eleven conductors 1104 , similar to the embodiments described above with respect to FIGS. 19-21 .
  • wire 1100 includes four reinforcing strands 1102 .
  • first conductor layer 1108 actually includes a single, central conductor 1104 a surrounded by four outer conductors 1104 b , 1104 c , 1104 d , and 1104 e . Between each outer conductor 1104 b , 1104 c , 1104 d and 1104 f is a reinforcing strand 1102 . Second conductor layer 1110 is adjacent both the four conductors 1104 b - e , and the four reinforcing strands 1102 .
  • Embodiments of the invention are not intended to be limited to the specific patterns and structures depicted in FIGS. 19-22 . It will be understood that the number of conductors 1104 , number of reinforcing strands 1102 , and their combinations, may vary.
  • embodiments of the disclosure include a number of decorative lighting assemblies that are tangle resistant and easier to manufacture as compared to known decorative lighting structures.
  • Various embodiments include, but are not limited to the following embodiments:
  • a decorative lighting assembly comprising:
  • the first power wire and the second power wire cooperating to surround a display area of the decorative lighting assembly
  • the plurality of lamp assemblies including a first row of lamp assemblies aligned along a first line, a second row of lamp assemblies aligned along a second line, a third row of lamp assemblies aligned along a third line, and a fourth row of lamp assemblies aligned along a fourth line;
  • a first cord disposed along a first zig-zag path mechanically coupling the lamp assemblies in the first row with the lamp assemblies in the second row;
  • a second cord disposed along a third zig-zag path mechanically coupling the lamp assemblies in the third row with the lamp assemblies in the fourth row.
  • Embodiment 1 wherein the display area has a shape generally corresponding to a four-sided polygon.
  • the decorative lighting assembly of Embodiment 2 wherein the shape of the display area generally corresponds to a rectangle having a first long side, a second long side, a first short side, and a second short side.
  • the first power wire defines the first short side and the first long side of the rectangle; and the second power wire defines the second short side and the second long side of the rectangle.
  • the decorative lighting assembly of Embodiment 1 further comprising a fifth row of lamp assemblies aligned along a fifth line and a plurality of intermediate wires disposed along a zig-zag path connecting the lamp assemblies in the fourth row with the lamp assemblies in the fifth row.
  • the decorative lighting assembly of Embodiment 1 further comprising a zeroth row of lamp assemblies aligned along a zeroth line and a plurality of intermediate wires disposed along a zeroth zig-zag path connecting the lamp assemblies in the zeroth row with the lamp assemblies in the first row.
  • the decorative lighting assembly of Embodiment 1 further comprising a first connector that mechanically couples a first end of a cord to the first power wire and a second connector that mechanically couples a second end of the cord to the second power wire.
  • the decorative lighting assembly of Embodiment 10, wherein the reinforced wire comprises:
  • the reinforcing strand comprising one or more fibers comprising a polymer material
  • an outer insulating layer adjacent to, and covering, one or more of the conductor strands.
  • the first power wire comprises 18 AWG wire
  • the second power wire comprises 18 AWG wire
  • the intermediate wires comprise 22 AWG wire.
  • the first power wire comprises 18 AWG wire
  • the second power wire comprises 18 AWG wire
  • the intermediate wires comprise 22 AWG reinforced wire.
  • the first power wire comprises 18 AWG wire
  • the second power wire comprises 18 AWG wire
  • the intermediate wires have a first outer diameter
  • the at least one cord has a second outer diameter
  • the second outer diameter is substantially equal to the first outer diameter so that the decorative lighting assembly has a uniform appearance.
  • the intermediate wires comprise a plurality of conductor strands and an outer insulating layer adjacent to, and covering, one or more of the conductor strands;
  • the at least one cord comprises a solid strand
  • the insulating layer of the intermediate wires and the solid strand comprise the same material so that the decorative lighting assembly has a uniform appearance.
  • the intermediate wires comprise a plurality of conductor strands and an outer insulating layer adjacent to, and covering, one or more of the conductor strands;
  • the at least one cord comprises a solid strand
  • the insulating layer of the intermediate wires and the solid strand are substantially the same color so that the decorative lighting assembly has a uniform appearance.
  • the decorative lighting assembly of Embodiment 1, wherein a first series circuit of the decorative lighting assembly comprises:
  • the decorative lighting assembly of Embodiment 19 further comprising a second connector electrically connecting a second end of the series circuit to the second power wire.
  • Embodiment 1 wherein a loop of wire is fixed to each of the lamp assemblies in the second row and the at least one cord extends through the loop of wire fixed to each of the lamp assemblies in the second row.
  • Embodiment 25 wherein the portion of the at least one cord extends through a first eye defined by a lamp holder of each lamp assembly and a second eye defined by a lamp holder of each lamp assembly.
  • Embodiment 26 wherein a bight of the portion of the at least one cord extends along an outer surface of the lamp holder between the first eye and the second eye.
  • a decorative lighting assembly comprising:
  • the first power wire and the second power wire cooperating to surround a display area of the decorative lighting assembly
  • the plurality of lamp assemblies including a first column of lamp assemblies aligned along a first line, a second column of lamp assemblies aligned along a second line, a third column of lamp assemblies aligned along a third line, and a fourth column of lamp assemblies aligned along a fourth line;
  • the decorative lighting assembly of Embodiment 31 wherein the display area has a shape generally corresponding to a four-sided polygon.
  • the decorative lighting assembly of Embodiment 32 wherein the shape of the display area generally corresponds to a rectangle having a first long side, a second long side, a first short side, and a second short side.
  • the first power wire defines the first short side, the first long side, and the second short side of the rectangle
  • the second power wire defines the second long side of the rectangle.
  • Embodiment 31 further comprising a fifth column of lamp assemblies aligned along a fifth line;
  • the at least one cord is disposed along a fourth zig-zag path connecting the lamp assemblies in the fourth column with the lamp assemblies in the fifth column.
  • the decorative lighting assembly of Embodiment 35 wherein the at least one cord comprises a single cord that extends through both the first zig-zag path and the fourth zig-zag path.
  • the decorative lighting assembly of Embodiment 36 further comprising a first fastener that mechanically couples a first end of the single cord and a second end of the single cord to the first power wire.
  • Embodiment 36 further comprising a bushing that mechanically couples an intermediate portion of the single cord to the second power wire.
  • Embodiment 36 wherein the single cord extends through a passageway defined by a clip of each lamp assembly in the second column and each lamp assembly in the third column.
  • the decorative lighting assembly of Embodiment 35 further comprising:
  • a bushing that mechanically couples an intermediate portion of the first top-most intermediate wire to the second power wire.
  • the reinforcing strand comprising one or more fibers comprising a polymer material
  • an outer insulating layer adjacent to, and covering, one or more of the conductor strands.
  • the first power wire comprises 18 AWG wire
  • the second power wire comprises 18 AWG wire
  • the intermediate wires comprise 22 AWG wire.
  • the first power wire comprises 18 AWG wire
  • the second power wire comprises 18 AWG wire
  • the intermediate wires comprise 22 AWG reinforced wire.
  • the first power wire comprises 18 AWG wire
  • the second power wire comprises 18 AWG wire
  • the intermediate wires comprise 25 AWG reinforced wire.
  • the intermediate wires have a first outer diameter
  • the at least one cord has a second outer diameter
  • the second outer diameter is substantially equal to the first outer diameter so that the decorative lighting assembly has a uniform appearance.
  • the intermediate wires comprise a plurality of conductor strands and an outer insulating layer adjacent to, and covering, one or more of the conductor strands;
  • the at least one cord comprises a solid strand
  • the insulating layer of the intermediate wires and the solid strand comprise the same material so that the decorative lighting assembly has a uniform appearance.
  • the intermediate wires comprise a plurality of conductor strands and an outer insulating layer adjacent to, and covering, one or more of the conductor strands;
  • the at least one cord comprises a solid strand
  • the insulating layer of the intermediate wires and the solid strand are substantially the same color so that the decorative lighting assembly has a uniform appearance.
  • the decorative lighting assembly of Embodiment 31, wherein a first series circuit of the decorative lighting assembly comprises:
  • the decorative lighting assembly of Embodiment 52 further comprising a first connector electrically connecting a first end of the series circuit to the first power wire.
  • the decorative lighting assembly of Embodiment 53 further comprising a second connector electrically connecting a second end of the series circuit to the second power wire.
  • Embodiment 55 wherein the first series circuit follows a winding path between the first connector and the second connector so that the lamp assemblies are distributed across the display area.
  • the decorative lighting assembly of Embodiment 56, wherein the winding path of the first series circuit includes:

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Abstract

A decorative lighting assembly comprises a first power wire electrically connected to a first power contact and a second power wire electrically connected to a second power contact. The first power wire and the second power wire cooperate to surround a display area of the decorative lighting assembly. Lamp assemblies are distributed across the display area. The lamp assemblies include a first row of lamp assemblies aligned along a first line, a second row aligned along a second line, a third row aligned along a third line, and a fourth row of lamp aligned along a fourth line. A first cord is disposed along a first zig-zag path connecting the lamp assemblies in the first row with the lamp assemblies in the second row. Intermediate wires are disposed along a second zig-zag path connecting the lamp assemblies in the second row with the lamp assemblies in the third row.

Description

RELATED APPLICATIONS
The present application is a continuation of U.S. patent application Ser. No. 15/333,535, filed Oct. 25, 2016, entitled TANGLE-RESISTANT DECORATIVE LIGHTING ASSEMBLY, which claims the benefit of U.S. Provisional Application No. 62/246,423, filed Oct. 26, 2015, entitled TANGLE-RESISTANT DECORATIVE LIGHTING ASSEMBLY, which are incorporated herein by reference in their entireties.
FIELD OF THE DISCLOSURE
The present invention is generally directed to decorative lighting. More specifically, the present invention is directed to decorative lighting assemblies having a net-like structure.
BACKGROUND OF THE INVENTION
Decorative lighting assemblies, and in particular net lights are traditionally assembled using elaborate patterns of interconnected wires and lights to form a particular desired shape or structure. Net lights, for example, often form rectangular or square outlines using zig-zag patterns of conductors powering incandescent or light-emitting diode (LED) lamps. The extensive lengths of wire conductors twisted together to form the desired shape or outline of such decorative assemblies results in a consumer product prone to tangling. Not only does such tangling of wires result in consumer frustration, but the untangling of the wires can result in wires being pulled from their connectors, resulting in potential safety hazards.
Further, from a manufacturing perspective, assembling net-like decorative lighting assemblies to achieve consistent appearances can be challenging.
SUMMARY
A decorative lighting assembly comprises a first power wire electrically connected to a first power contact and a second power wire electrically connected to a second power contact. The first power wire and the second power wire cooperate to surround a display area of the decorative lighting assembly. A plurality of lamp assemblies are distributed across the display area. The plurality of lamp assemblies includes a first row of lamp assemblies aligned along a first line, a second row of lamp assemblies aligned along a second line, a third row of lamp assemblies aligned along a third line, and a fourth row of lamp assemblies aligned along a fourth line. A first cord is disposed along a first zig-zag path connecting the lamp assemblies in the first row with the lamp assemblies in the second row. A plurality of intermediate wires are disposed along a second zig-zag path connecting the lamp assemblies in the second row with the lamp assemblies in the third row. A second cord is disposed along a third zig-zag path connecting the lamp assemblies in the third row with the lamp assemblies in the fourth row.
BRIEF DESCRIPTION OF THE DRAWINGS
The invention can be understood in consideration of the following detailed description of various embodiments of the invention in connection with the accompanying drawings, in which:
FIG. 1 is a plan view showing an illustrative embodiment of a decorative lighting assembly;
FIG. 2 is a plan view showing an additional illustrative embodiment of the decorative lighting assembly shown in FIG. 1;
FIG. 3 is a plan view showing an additional illustrative embodiment of the decorative lighting assembly shown in FIG. 1;
FIG. 4 is a plan view showing an additional illustrative embodiment of the decorative lighting assembly shown in FIG. 1;
FIG. 5A is an exploded perspective view showing a power wire, an intermediate wire, and a bushing;
FIG. 5B is a perspective view showing the second power wire, the intermediate wire, and the bushing shown in of FIG. 5A;
FIG. 5C is a perspective view showing the second power wire, the intermediate wire, and the bushing shown in of FIG. 5A;
FIG. 6A is an exploded perspective view showing portions of a cord and a male portion of a fastener C;
FIG. 6B is an additional perspective view showing the cord and the male portion the fastener shown in FIG. 6A;
FIG. 6C is an exploded perspective view showing the male portion of the fastener and the female portion of the fastener shown in FIG. 6B;
FIG. 6D is an exploded perspective view showing the cord and first power wire of FIG. 6C coupled by the fastener;
FIG. 7A is a perspective view showing a connector;
FIG. 7B is a perspective view showing a connector;
FIG. 8A is a perspective view showing an alternate embodiment of the connector shown in FIG. 7A and FIG. 7B;
FIG. 8B is a plan view of the connector shown in FIG. 8A;
FIG. 9A is a perspective view showing an alternate embodiment of the connector shown in FIG. 7A and FIG. 7B;
FIG. 9B is a plan view of the connector shown in FIG. 9A;
FIG. 10A is an exploded perspective view showing a male portion of a connector and a female portion of the connector, a first portion of a power wire, a second portion of the power wire and an intermediate wire;
FIG. 10B is a partially assembled perspective view showing the male portion of the connector and the female portion of the connector shown in FIG. 10B;
FIG. 10C is an assembled perspective view showing the male portion of the connector and the female portion of the connector shown in FIG. 10B; and
FIG. 10D is a section view further illustrating the male portion of the connector and the female portion of the connector shown in FIG. 10B.
FIG. 11 is a plan view showing an illustrative embodiment of a decorative lighting assembly.
FIG. 12 is a plan view showing an additional illustrative embodiment of the decorative lighting assembly 300 shown in FIG. 11.
FIG. 13 is a plan view showing an additional illustrative embodiment of decorative lighting assembly 300 shown in FIGS. 11 and 12.
FIG. 14 is a plan view showing an additional illustrative embodiment of decorative lighting assembly 300 shown in FIGS. 11-13.
FIG. 15 is an enlarged plan view showing a portion of the decorative lighting assembly shown in FIG. 14.
FIG. 16 is an enlarged perspective view further illustrating a portion of a decorative lighting assembly.
FIG. 17A is a perspective view showing one side of a lamp assembly.
FIG. 17B is a perspective view showing another side of the lamp assembly shown in FIG. 17A.
FIG. 18A is a perspective view showing one side of a lamp assembly.
FIG. 18B is a perspective view showing another side of the lamp assembly shown in FIG. 18A.
FIG. 19 is a perspective view of a reinforced decorative wire, according to an embodiment of the claimed invention.
FIG. 20A is a cross-sectional view of the reinforced decorative wire of FIG. 19.
FIG. 20B is a cross-sectional view of the reinforced decorative wire of FIG. 19, depicting variations in conductor and strand position caused during manufacturing.
FIG. 21 is a cross-sectional view of another embodiment of a reinforced decorative wire, according to an embodiment of the claimed invention.
FIG. 22 is a cross-sectional view of another embodiment of a reinforced decorative wire, according to an embodiment of the invention.
While the invention is amenable to various modifications and alternative forms, specifics thereof have been shown by way of example in the drawings and will be described in detail. It should be understood, however, that the intention is not to limit the invention to the particular embodiments described. On the contrary, the intention is to cover all modifications, equivalents, and alternatives falling within the spirit and scope of the invention as defined by the appended claims.
DETAILED DESCRIPTION OF THE FIGURES
FIG. 1 is a plan view showing an illustrative embodiment of a decorative lighting assembly 100. Decorative lighting assembly 100 comprises a first power wire 102 and a second power wire 104. In FIG. 1, first power wire 102 and second power wire 104 are cooperating to surround a display area 106 of decorative lighting assembly 100. With reference to FIG. 1 it will be appreciated that decorative lighting assembly 100 includes a plurality of lamp assemblies 108 distributed across display area 106. The plurality of lamp assemblies 108 include a first column 120A of lamp assemblies 108 aligned along a first line 122A, a second column 120B of lamp assemblies 108 aligned along a second line 122B, and a third column 120C of lamp assemblies 108 aligned along a third line 122C.
A plurality of lamp assemblies 108 of decorative lighting assembly 100 may be inter-connected by wires to form one or more electrical circuits. A plurality of lamp assemblies 108 of decorative lighting assembly 100 may be mechanically coupled by cords which provide mechanical support. In some embodiments, the wires and the cords cooperate to form a net-like structure. In the embodiment of FIG. 1, the plurality of lamp assemblies 108 include a fourth column 120D of lamp assemblies 108 aligned along a first line 122D and a fifth column 120E of lamp assemblies aligned along a fifth line 122E.
Decorative lighting assembly 100 of FIG. 1 includes a power plug 124. Power plug 124 may comprise a traditional power plug comprising housing 126, first power terminal 128A and a second power terminal 128B for plugging into an outlet of an external power source, which may be an alternating-current (AC) power source. First power wire 102 is electrically connected to first power terminal 128A of power plug 124. Second power wire 104 is electrically connected to second power terminal 128B of power plug 124. In some embodiments, first power wire 102 and second power wire 104 may comprise a reinforced wire such as the reinforced wire described in issued U.S. Pat. No. 9,243,788, which is herein incorporated by reference in its entirety. Reinforced wire is depicted in FIGS. 19-22 and described herein.
With reference to FIG. 1, it will be appreciated that display area 106 of decorative lighting assembly 100 has a shape generally corresponding to a four-sided polygon. In the embodiment of FIG. 1, the shape of display area generally corresponds to a rectangle having a first long side, a second long side, a first short side, and a second short side. First power wire 102 defines the first short side, the first long side, and the second short side of a rectangle in the embodiment of FIG. 1. Second power wire 104 defines the second long side of a rectangle in the embodiment of FIG. 1.
FIG. 2 is a plan view showing an additional illustrative embodiment of decorative lighting assembly 100 shown in the previous figure. Decorative lighting assembly 100 comprises a first power wire 102 and a second power wire 104. In FIG. 2, first power wire 102 and second power wire 104 are cooperating to surround a display area 106 of decorative lighting assembly 100. With reference to FIG. 2 it will be appreciated that decorative lighting assembly 100 includes a plurality of lamp assemblies 108 distributed across display area 106. The plurality of lamp assemblies 108 include a first column 120A of lamp assemblies 108, a second column 120B of lamp assemblies 108, a third column 120C of lamp assemblies 108, and a fourth column 120D of lamp assemblies 108.
In the embodiment of FIG. 2, a plurality of intermediate wires 130 are disposed along a first zig-zag path 132A connecting the lamp assemblies in first column 120A with the lamp assemblies in second column 120B. In some embodiments, decorative lighting assembly 100 may include a cord that is disposed along a second zig-zag path connecting the lamp assemblies in second column 120B with the lamp assemblies in third column 120C. In the embodiment of FIG. 2, decorative lighting assembly 100 includes a plurality of intermediate wires 130 that are disposed along a third zig-zag path 132C connecting the lamp assemblies in third column 120C with the lamp assemblies in fourth column 120D. In some embodiments, intermediate wires 130, first power wire 102 and second power wire 104 may comprise a reinforced wire such as the reinforced wire described in issued U.S. Pat. No. 9,243,788, which is herein incorporated by reference in its entirety. Reinforced wire is depicted in FIGS. 19-22 and described herein.
Decorative lighting assembly 100 of FIG. 2, includes a first series circuit 134A comprising a first lamp assembly 108A electrically connected to first power wire 102 at a connector B1 and an nth lamp assembly 108N electrically connected to second power wire 104 at a connector B2. In the embodiment of FIG. 2, a plurality of intermediate lamp assemblies 108 are electrically connected in series between first lamp assembly 108A and nth lamp assembly 108A.
With reference to FIG. 2, it will be appreciated that first series circuit 134 follows a winding path between connector B1 and connector B2 so that the lamp assemblies 108 are distributed across display area 106. In the embodiment of FIG. 2, the winding path of first series circuit 134 includes a plurality of intermediate wires 130 disposed along the first zig-zag path 132A connecting the lamp assemblies in first column 120A with the lamp assemblies 108 in second column 120B. First series circuit 134 also includes the plurality of intermediate wires 130 disposed along third zig-zag path 132C connecting the lamp assemblies 108 in third column 120C with the lamp assemblies 108 in fourth column 120D.
FIG. 3 is a plan view showing an additional illustrative embodiment of decorative lighting assembly 100 shown in the previous figure. Decorative lighting assembly 100 comprises a first power wire 102 and a second power wire 104. In FIG. 3, first power wire 102 and second power wire 104 are cooperating to surround a display area 106 of decorative lighting assembly 100. With reference to FIG. 3 it will be appreciated that decorative lighting assembly 100 includes a plurality of lamp assemblies 108 distributed across display area 106. The plurality of lamp assemblies 108 include a first column 120A of lamp assemblies 108, a second column 120B of lamp assemblies 108, a third column 120C of lamp assemblies 108, a fourth column 120 of lamp assemblies 108, and a fifth column 120E of lamp assemblies 108.
In the embodiment of FIG. 3, a plurality of lamp assemblies 108 of decorative lighting assembly 100 are mechanically coupled by cords 136 which provide mechanical support. In some embodiments, a plurality of lamp assemblies 108 of decorative lighting assembly 100 may be inter-connected by wires to form one or more electrical circuits. In some embodiments, the wires and the cords cooperate to form a net-like structure.
Decorative lighting assembly 100 of FIG. 1, includes a cord 136 that is disposed along a second zig-zag path 132A connecting the lamp assemblies in second column 120B with the lamp assemblies in third column 120C. In the embodiment of FIG. 3, cord 136 also extends along a fourth zig-zag path 132D connecting the lamp assemblies in fourth column 120D with the lamp assemblies in fifth column 120E. Cord 136 is illustrated using dashed lines in FIG. 3. In some embodiments, cord 136 may comprise a plurality of cord segments.
In the embodiment of FIG. 3, cord 136A comprises a single cord that extends through both second zig-zag path 132B and the fourth zig-zag path 132D. Decorative lighting assembly 100 of FIG. 3, includes a fastener C that mechanically couples a first end of cord 136A and a second end of cord 136A to first power wire 102. In the embodiment of FIG. 3, first power wire 102 extends through a passageway defined by fastener C.
Decorative lighting assembly 100 of FIG. 3 also includes a bushing A2 that mechanically couples an intermediate portion of cord 136A to second power wire 104. In the embodiment of FIG. 3, cord 136A and second power wire 104 extend through a passageway defined by bushing A2. Also in the embodiment of FIG. 3, cord 136A extends through a passageway defined by a clip of each lamp assembly 108 in second column 120A and each lamp assembly 108 in third column 120C.
FIG. 4 is a plan view showing an additional illustrative embodiment of decorative lighting assembly 100 shown in the previous figure. Decorative lighting assembly 100 comprises a first power wire 102 and a second power wire 104. In FIG. 4, first power wire 102 and second power wire 104 are cooperating to surround a display area 106 of decorative lighting assembly 100. With reference to FIG. 4 it will be appreciated that decorative lighting assembly 100 includes a plurality of lamp assemblies 108 distributed across display area 106. The plurality of lamp assemblies 108 include a first column 120A of lamp assemblies 108, a second column 120B of lamp assemblies 108, a third column 120C of lamp assemblies 108, a fourth column 120 of lamp assemblies 108, and a fifth column 120E of lamp assemblies 108.
In the embodiment of FIG. 4, a plurality of lamp assemblies 108 of decorative lighting assembly 100 are inter-connected by intermediate wires 130 to form electrical circuits. Also in the embodiment of FIG. 4, a plurality of lamp assemblies 108 of decorative lighting assembly 100 are mechanically coupled by cords 136 which provide mechanical support. In the embodiment of FIG. 4, the wires and the cords cooperate to form a net-like structure. For purposes of illustration, the cords are illustrated using dashed lines and the wires are illustrated using solid lines in FIG. 4.
In the embodiment of FIG. 4, a plurality of intermediate wires 130 are disposed along a first zig-zag path 132A connecting the lamp assemblies in first column 120A with the lamp assemblies in second column 120B. Also in the embodiment of FIG. 4, decorative lighting assembly 100 includes a cord 136A that extends along a second zig-zag path 132B connecting the lamp assemblies in second column 120B with the lamp assemblies in third column 120C. A plurality of intermediate wires 130 are disposed along a third zig-zag path 132C connecting the lamp assemblies in third column 120C with the lamp assemblies in fourth column 120D. In the embodiment of FIG. 4, cord 136A extends along a fourth zig-zag path 132D connecting the lamp assemblies in fourth column 120D with the lamp assemblies in fifth column 120E. Cord 136A is illustrated using dashed lines in FIG. 4. In some embodiments, cord 136A may comprise a plurality of cord segments.
In the embodiment of FIG. 4, cord 136A comprises a single cord that extends through both second zig-zag path 132B and the fourth zig-zag path 132D. Decorative lighting assembly 100 of FIG. 4, includes a fastener C that mechanically couples a first end of cord 136A and a second end of cord 136A to first power wire 102. In the embodiment of FIG. 4, first power wire 102 extends through a passageway defined by fastener C.
With reference to FIG. 4, it will be appreciated that a top-most intermediate wire extends between a top-most lamp assembly in first column 120A and a top-most lamp assembly in third column 120C. In the embodiment of FIG. 4, a bushing A1 mechanically couples an intermediate portion of the first top-most intermediate wire to second power wire 104. In the embodiment of FIG. 4, the second power wire 104 and the top-most intermediate wire extend through a passageway defined by bushing A1.
In some embodiments of decorative lighting assembly 100, the intermediate wires 130 have a first outer diameter, the cords 136 have a second outer diameter, and the second outer diameter is substantially equal to the first outer diameter so that decorative lighting assembly 100 has a uniform appearance.
In some embodiments of decorative lighting assembly 100, the intermediate wires 130 comprise a plurality of conductor strands and an outer insulating layer adjacent to, and covering, one or more of the conductor strands. The cords 136 may comprise a solid strand. In some embodiments of decorative lighting assembly 100, the insulating layer of the intermediate wires 130 and the solid strand of the cords 136 comprise the same material so that the decorative lighting assembly has a uniform appearance. In some embodiments of decorative lighting assembly 100, the insulating layer of the intermediate wires 130 and the solid strand of the cords 136 are substantially the same color so that the decorative lighting assembly has a uniform appearance.
In some embodiments of decorative lighting assembly 100, the first power wire comprises 18 AWG wire, the second power wire comprises 18 AWG wire, and the intermediate wires comprise 22 AWG wire.
In some embodiments of decorative lighting assembly 100, the first power wire comprises 18 AWG wire, the second power wire comprises 18 AWG wire, and the intermediate wires comprise 22 AWG reinforced wire.
In some embodiments of decorative lighting assembly 100, the first power wire comprises 18 AWG wire, the second power wire comprises 18 AWG wire, and the intermediate wires comprise 25 AWG reinforced wire.
FIG. 5A is an exploded perspective view showing a second power wire 104, an intermediate wire 130, and a bushing A1. FIG. 5B is a perspective view showing second power wire 104, intermediate wire 130, and bushing A1 of FIG. 5A in an assembled state. In FIG. 5B, intermediate wire 130 and second power wire 104 can be see extending through a passageway P defined by bushing A1.
FIG. 5C is a perspective view showing a second power wire 104, a cord 136, and a bushing A2. In the embodiment of FIG. 5C, cord 136A and second power wire 104 extend through a passageway P defined by bushing A2.
FIG. 6A is an exploded perspective view showing portions of a cord 136A and a male portion 142M of fastener C. A first end 140A and a second end 140B of cord 136A are visible in FIG. 6A.
FIG. 6B is an additional perspective view showing portions of cord 136A and male portion 142M of fastener C. In the embodiment of FIG. 6B, first end 140A and second end 140B of cord 136A are fixed to male portion 142M of fastener C.
FIG. 6C is an exploded perspective view showing a male portion 142M of fastener C and a female portion 142F of fastener C. In the embodiment of FIG. 6C, first end 140A and second end 140B of cord 136A are fixed to male portion 142M of fastener C. In FIG. 6C, a first power wire 102 can be seen extending through a passageway P defined by female portion 142F of fastener C.
FIG. 6D is an exploded perspective view showing cord 136 coupled to first power wire 102A by fastener C. In the embodiment of FIG. 6D, first end 140A and second end 140B of cord 136A are fixed to male portion 142M of fastener C. In FIG. 6D, first power wire 102 can be seen extending through a passageway P defined by fastener C.
FIG. 7A is a perspective view showing a connector B2. In the embodiment of FIG. 7A, a first portion 144A of a power wire 102, a second portion 144B of power wire 102 and an intermediate wire 130 are electrically connected to each other by connector B2. The embodiment of FIG. 7A also includes a cord 136. In the embodiment of FIG. 7A, cord 136, first portion 144A of power wire 102, second portion 144B of power wire 102, and intermediate wire 130 are all mechanically coupled to each other by connector B2.
FIG. 7B is a perspective view showing a connector B2. In the embodiment of FIG. 7B, connector B2 is sectioned so that one end of cord 136 can be seen captured inside connector B2. In the embodiment of FIG. 7B, cord 136, first portion 144A of power wire 102, second portion 144B of power wire 102, and intermediate wire 130 are all mechanically coupled to each other by connector B2. First portion 144A of a power wire 102, a second portion 144B of power wire 102 and an intermediate wire 130 are electrically connected to each other by connector B2 in the embodiment of FIG. 7B.
FIG. 8A is a perspective view showing an alternate embodiment of connector B2 shown in FIG. 7A and FIG. 7B.
FIG. 8B is a plan view showing the connector B2 shown in FIG. 8A.
FIG. 9A is a perspective view showing an alternate embodiment of connector B2 shown in FIG. 7A and FIG. 7B.
FIG. 9B is a plan view showing the connector B2 shown in FIG. 9A.
FIG. 10A is an exploded perspective view showing a male portion 154M of connector B1 and a female portion 152F of connector B1. A first portion 154A of a power wire 102, a second portion 154B of power wire 102 and an intermediate wire 130 are all illustrated in the exploded view of FIG. 10A.
FIG. 10B is a partially assembled perspective view showing male portion 154M of connector B1 and female portion 152F of connector B1. In the embodiment of FIG. 10B, first portion 154A of power wire 102 has been inserted into male portion 154M of connector B1. Also in the embodiment of FIG. 10B, a second portion 154B of power wire 102 and an intermediate wire 130 have been inserted into female portion 154F of connector B1.
FIG. 10C is an assembled perspective view showing a male portion 154M of connector B1 and a female portion 152F of connector B1. In the embodiment of FIG. 10C, male portion 154M of connector B1 has been inserted into female portion 152F of connector B1. First portion 154A of power wire 102, second portion 154B of power wire 102 and intermediate wire 130 all are electrically connected to each other by connector B2 in the embodiment of FIG. 10C. First portion 154A of power wire 102, second portion 154B of power wire 102, and intermediate wire 130 are also mechanically coupled to each other by connector B2 in the embodiment of FIG. 10C.
FIG. 10D is a section view further illustrating male portion 154M of connector B1 and female portion 152F of connector B1.
FIG. 11 is a plan view showing an illustrative embodiment of a decorative lighting assembly 300. Decorative lighting assembly 300 comprises a first power wire 302 and a second power wire 304. In FIG. 11, first power wire 302 and second power wire 304 are cooperating to surround a display area 306 of decorative lighting assembly 300. With reference to FIG. 11 it will be appreciated that decorative lighting assembly 300 includes a plurality of lamp assemblies 308 distributed across display area 306. The plurality of lamp assemblies 308 include a first row 320A of lamp assemblies 308 aligned along a first line 322A, a second row 320B of lamp assemblies 308 aligned along a second line 322B, and a third row 320C of lamp assemblies 308 aligned along a third line 322C.
A plurality of lamp assemblies 308 of decorative lighting assembly 300 may be inter-connected by wires to form one or more electrical circuits. A plurality of lamp assemblies 308 of decorative lighting assembly 300 may be mechanically coupled by cords which provide mechanical support. In some embodiments, the wires and the cords cooperate to form a net-like structure. In the embodiment of FIG. 11, the plurality of lamp assemblies 308 include a fourth row 320D of lamp assemblies 308 aligned along a first line 322D and a fifth row 320E of lamp assemblies 308 aligned along a fifth line 322E. The decorative lighting assembly 300 also includes a zeroth row 320Z of lamp assemblies 308 aligned along a zeroth line 322Z in the embodiment of FIG. 11.
Decorative lighting assembly 300 of FIG. 11 includes a power plug 324. Power plug 324 may comprise a traditional power plug comprising housing 326, first power terminal 328A and a second power terminal 328B for plugging into an outlet of an external power source, which may be an alternating-current (AC) power source. First power wire 302 is electrically connected to first power terminal 328A of power plug 324. Second power wire 304 is electrically connected to second power terminal 328B of power plug 324. In some embodiments, first power wire 302 and second power wire 304 may comprise a reinforced wire such as the reinforced wire described in issued U.S. Pat. No. 9,243,788, which is herein incorporated by reference in its entirety. Reinforced wire is depicted in FIGS. 19-22 and described herein.
With reference to FIG. 11, it will be appreciated that display area 306 of decorative lighting assembly 300 has a shape generally corresponding to a four-sided polygon. In the embodiment of FIG. 11, the shape of display area generally corresponds to a rectangle having a first long side, a second long side, a first short side, and a second short side. First power wire 302 defines the first short side and the first long side of a rectangle in the embodiment of FIG. 11. Second power wire 304 defines the second short side and the second long side of a rectangle in the embodiment of FIG. 11.
FIG. 12 is a plan view showing an additional illustrative embodiment of decorative lighting assembly 300 shown in the previous figure. Decorative lighting assembly 300 comprises a first power wire 302 and a second power wire 304. In FIG. 12, first power wire 302 and second power wire 304 are cooperating to surround a display area 306 of decorative lighting assembly 300. With reference to FIG. 12 it will be appreciated that decorative lighting assembly 300 includes a plurality of lamp assemblies 308 distributed across display area 306. The plurality of lamp assemblies 308 include a first row 320A of lamp assemblies 308, a second row 320B of lamp assemblies 308, a third row 320C of lamp assemblies 308, a fourth row 320 of lamp assemblies 308, and a fifth row 320E of lamp assemblies 308.
In the embodiment of FIG. 12, a plurality of lamp assemblies 308 of decorative lighting assembly 300 are mechanically coupled by cords 336 which provide mechanical support. In some embodiments, a plurality of lamp assemblies 308 of decorative lighting assembly 300 may be inter-connected by wires to form one or more electrical circuits. In some embodiments, the wires and the cords cooperate to form a net-like structure.
In the embodiment of FIG. 12, a first cord 336A is disposed along a first zig-zag path 332A mechanically coupling the lamp assemblies 308 in the first row 320A with the lamp assemblies 308 in the second row 320B. A second cord 336B is disposed along a third zig-zag path 332C mechanically coupling the lamp assemblies 308 in the third row 320C with the lamp assemblies in the fourth row 320D in the embodiment of FIG. 12. In some embodiments, each cord 336 comprises a plurality of cord segments.
In the embodiment of FIG. 12, a first connector 398A mechanically couples a first end of a first cord 336A to the first power wire 304 and a second connector 398B mechanically couples a second end of the first cord 336A to the second power wire 306. A third connector 398C mechanically couples a first end of the second cord 336B to the first power wire 304 and a fourth connector 398D mechanically couples a second end of the second cord 336B to the second power wire 306 in the embodiment of FIG. 12.
FIG. 13 is a plan view showing an additional illustrative embodiment of decorative lighting assembly 300 shown in the previous figure. Decorative lighting assembly 300 comprises a first power wire 302 and a second power wire 304. In FIG. 13, first power wire 302 and second power wire 304 are cooperating to surround a display area 306 of decorative lighting assembly 300. With reference to FIG. 13 it will be appreciated that decorative lighting assembly 300 includes a plurality of lamp assemblies 308 distributed across display area 306. The plurality of lamp assemblies 308 include a first row 320A of lamp assemblies 308, a second row 320B of lamp assemblies 308, a third row 320C of lamp assemblies 308, and a fourth row 320D of lamp assemblies 308.
In the embodiment of FIG. 13, a plurality of intermediate wires 330 are disposed along a zeroth zig-zag path 332Z connecting the lamp assemblies 308 in the zeroth row 320Z with the lamp assemblies 308 in the first row 320A. Also in the embodiment of FIG. 13, a plurality of intermediate wires 330 are disposed along a second zig-zag path 332B connecting the lamp assemblies 308 in the second row 320B with the lamp assemblies 308 in the third row 320C. A plurality of intermediate wires 330 disposed along a fourth zig-zag path 332D connecting the lamp assemblies 308 in the fourth row 320D with the lamp assemblies 308 in the fifth row 320E in the embodiment of FIG. 13.
In some embodiments, intermediate wires 330, first power wire 302 and second power wire 304 may comprise a reinforced wire such as the reinforced wire described in issued U.S. Pat. No. 9,243,788, which is herein incorporated by reference in its entirety. Reinforced wire is depicted in FIGS. 19-22 and described herein.
Decorative lighting assembly 300 of FIG. 13, includes a first series circuit 334A comprising a plurality of lamp assemblies 308 and intermediate wires 330 connected between the first power wire 304 and second power wire 306. In the embodiment of FIG. 13, the first series circuit 334A includes a plurality of intermediate wires 330 disposed along a zeroth zig-zag path 332Z connecting the lamp assemblies 308 in the zeroth row 320Z with the lamp assemblies 308 in the first row 320A. In the embodiment of FIG. 13, a zeroth connector 398Z electrically connects a first end of the first series circuit 334A to the first power wire 304 and a second connector 398B electrically connects a second end of the first series circuit 334A to the second power wire 306.
Decorative lighting assembly 300 of FIG. 13, also includes a second series circuit 334B comprising a plurality of lamp assemblies 308 and intermediate wires 330 connected between the first power wire 304 and second power wire 306. A third series circuit 334C of decorative lighting assembly 300 can also be seen in FIG. 13. The third series circuit 334C comprises a plurality of lamp assemblies 308 and intermediate wires 330 connected between the first power wire 304 and second power wire 306.
In the embodiment of FIG. 13, the second series circuit 334B includes a plurality of intermediate wires 330 disposed along the second zig-zag path 332B connecting the lamp assemblies 308 in the second row 320B with the lamp assemblies 308 in the third row 320C. In the embodiment of FIG. 13, the third series circuit 334C includes a plurality of intermediate wires 330 disposed along the fourth zig-zag path 332D connecting the lamp assemblies 308 in the fourth row 320D with the lamp assemblies 308 in the fifth row 320E. In the embodiment of FIG. 13, a first connector 398A electrically connects a first end of the second series circuit 334B to the first power wire 304 and a fourth connector 398D electrically connects a second end of the second series circuit 334B to the second power wire 306. In the embodiment of FIG. 13, a third connector 398C electrically connects a first end of the third series circuit 334B to the first power wire 304 and a fifth connector 398E electrically connects a second end of the third series circuit 334B to the second power wire 306.
FIG. 14 is a plan view showing an additional illustrative embodiment of decorative lighting assembly 300 shown in the previous figure. Decorative lighting assembly 300 comprises a first power wire 302 and a second power wire 304. In FIG. 14, first power wire 302 and second power wire 304 are cooperating to surround a display area 306 of decorative lighting assembly 300. With reference to FIG. 14 it will be appreciated that decorative lighting assembly 300 includes a plurality of lamp assemblies 308 distributed across display area 306. The plurality of lamp assemblies 308 include a zeroth row 320Z of lamp assemblies 308, a first row 320A of lamp assemblies 308, a second row 320B of lamp assemblies 308, a third row 320C of lamp assemblies 308, a fourth row 320 of lamp assemblies 308, and a fifth row 320E of lamp assemblies 308.
In the embodiment of FIG. 14, a plurality of lamp assemblies 308 of decorative lighting assembly 300 are inter-connected by intermediate wires 330 to form electrical circuits. Also in the embodiment of FIG. 14, a plurality of lamp assemblies 308 of decorative lighting assembly 300 are mechanically coupled by cords 336 which provide mechanical support. In the embodiment of FIG. 14, the wires and the cords cooperate to form a net-like structure.
In the embodiment of FIG. 14, a plurality of intermediate wires 330 are disposed along a zeroth zig-zag path 332Z connecting the lamp assemblies 308 in the zeroth row 320Z with the lamp assemblies 308 in the first row 320A. A first cord 336A is disposed along a first zig-zag path 332A mechanically coupling the lamp assemblies 308 in the first row 320A with the lamp assemblies 308 in the second row 320B in the embodiment of FIG. 14. Also in the embodiment of FIG. 14, a plurality of intermediate wires 330 are disposed along a second zig-zag path 332B connecting the lamp assemblies 308 in the second row 320B with the lamp assemblies 308 in the third row 320C.
A second cord 336B is disposed along a third zig-zag path 332C mechanically coupling the lamp assemblies 308 in the third row 320C with the lamp assemblies in the fourth row 320D in the embodiment of FIG. 14. A plurality of intermediate wires 330 disposed along a fourth zig-zag path 332D connecting the lamp assemblies 308 in the fourth row 320D with the lamp assemblies 308 in the fifth row 320E in the embodiment of FIG. 14.
Decorative lighting assembly 300 of FIG. 14, includes a first series circuit 334A comprising a plurality of lamp assemblies 308 and intermediate wires 330 connected between the first power wire 304 and second power wire 306. In the embodiment of FIG. 14, the first series circuit 334A includes a plurality of intermediate wires 330 disposed along a zeroth zig-zag path 332Z connecting the lamp assemblies 308 in the zeroth row 320Z with the lamp assemblies 308 in the first row 320A. In the embodiment of FIG. 14, a zeroth connector 398Z electrically connects a first end of the first series circuit 334A to the first power wire 304 and a second connector 398B electrically connects a second end of the first series circuit 334A to the second power wire 306.
Decorative lighting assembly 300 of FIG. 14, also includes a second series circuit 334B comprising a plurality of lamp assemblies 308 and intermediate wires 330 connected between the first power wire 304 and second power wire 306. A third series circuit 334C of decorative lighting assembly 300 can also be seen in FIG. 14. The third series circuit 334C comprises a plurality of lamp assemblies 308 and intermediate wires 330 connected between the first power wire 304 and second power wire 306.
In the embodiment of FIG. 14, the second series circuit 334B includes a plurality of intermediate wires 330 disposed along the second zig-zag path 332B connecting the lamp assemblies 308 in the second row 320B with the lamp assemblies 308 in the third row 320C. In the embodiment of FIG. 14, the third series circuit 334C includes a plurality of intermediate wires 330 disposed along the fourth zig-zag path 332D connecting the lamp assemblies 308 in the fourth row 320D with the lamp assemblies 308 in the fifth row 320E. In the embodiment of FIG. 13, a first connector 398A electrically connects a first end of the second series circuit 334B to the first power wire 304 and a fourth connector 398D electrically connects a second end of the second series circuit 334B to the second power wire 306. In the embodiment of FIG. 13, a third connector 398C electrically connects a first end of the third series circuit 334B to the first power wire 304 and a fifth connector 398E electrically connects a second end of the third series circuit 334B to the second power wire 306.
FIG. 15 is an enlarged plan view showing a portion of the decorative lighting assembly 300 shown in the previous figure. The portion of decorative lighting assembly 300 shown in FIG. 15 includes a zeroth row 320Z of lamp assemblies 308, a first row 320A of lamp assemblies 308, a second row 320B of lamp assemblies 308 and a third row 320C of lamp assemblies 308. In the embodiment of FIG. 15, a plurality of intermediate wires 330 are disposed along a zeroth zig-zag path 332Z connecting the lamp assemblies 308 in the zeroth row 320Z with the lamp assemblies 308 in the first row 320A. A first cord 336A is disposed along a first zig-zag path 332A mechanically coupling the lamp assemblies 308 in the first row 320A with the lamp assemblies 308 in the second row 320B in the embodiment of FIG. 15. Also in the embodiment of FIG. 15, a plurality of intermediate wires 330 are disposed along a second zig-zag path 332B connecting the lamp assemblies 308 in the second row 320B with the lamp assemblies 308 in the third row 320C.
With reference to FIG. 15, it will be appreciated that a first loop of wire is fixed to each of the lamp assemblies 308 in the first row 320A. A second loop of wire is also fixed to each of the lamp assemblies 308 in the first row 320A. In FIG. 15, the first cord 336A can be seen extending through the first and second loops of wire fixed to each of the lamp assemblies 308 in the second row first row 320A.
FIG. 16 is an enlarged perspective view further illustrating a portion of a decorative lighting assembly 300. The portion of decorative lighting assembly 300 shown in FIG. 16 includes a plurality of lamp assemblies 308 distributed across a display area 306. The plurality of lamp assemblies 308 include a first row 320A of lamp assemblies 308 aligned along a first line 322A, a second row 320B of lamp assemblies 308 aligned along a second line 322B, a third row 320C of lamp assemblies 308 aligned along a third line 322C, and a fourth row 320D of lamp assemblies 308 aligned along a fourth line 322D.
In the embodiment of FIG. 16, a plurality of intermediate wires 330 are disposed along a zeroth zig-zag path 332Z connecting the lamp assemblies 308 in the zeroth row 320Z with the lamp assemblies 308 in the first row 320A. A first cord 336A is disposed along a first zig-zag path 332A mechanically coupling the lamp assemblies 308 in the first row 320A with the lamp assemblies 308 in the second row 320B in the embodiment of FIG. 16. Also in the embodiment of FIG. 16, a plurality of intermediate wires 330 are disposed along a second zig-zag path 332B connecting the lamp assemblies 308 in the second row 320B with the lamp assemblies 308 in the third row 320C.
A second cord 336B is disposed along a third zig-zag path 332C mechanically coupling the lamp assemblies 308 in the third row 320C with the lamp assemblies in the fourth row 320D in the embodiment of FIG. 16. A plurality of intermediate wires 330 disposed along a fourth zig-zag path 332D connecting the lamp assemblies 308 in the fourth row 320D with the lamp assemblies 308 in the fifth row 320E in the embodiment of FIG. 16.
FIG. 17A is a perspective view showing one side of a lamp assembly 308. FIG. 17B is a perspective view showing another side of the lamp assembly 308 shown in FIG. 17A. FIG. 17A and FIG. 17B may be collectively referred to as FIG. 17. A connection 396 is formed between the lamp assembly 308 and a cord 336. In the embodiment of FIG. 17, the connection 396 comprises a portion of the cord 336 that is extending through a tortuous path 394 defined by the lamp assembly 308. A portion of the cord 336 extends through a first lumen 392A and a second lumen 392B defined by the housing of the lamp assembly 308. A bight 390 of the cord 336 extends along the outside surface of the housing between the first lumen 392A and the second lumen 392B. A first bend 389A is formed in the cord 336 between the first lumen 392A and the bight 390. A second bend 389B is formed in the cord 336 between the second lumen 392B and the bight 390.
FIG. 18A is a perspective view showing one side of a lamp assembly 308. FIG. 18B is a perspective view showing another side of the lamp assembly 308 shown in FIG. 18A. FIG. 18A and FIG. 18B may be collectively referred to as FIG. 18. A connection 396 is formed between the lamp assembly 308 and a cord 336. In the embodiment of FIG. 18, the connection 396 comprises a portion of the cord 336 that is extending through a tortuous path 394 defined by the lamp assembly 308. A portion of the cord 336 extends through a first lumen 392A and a second lumen 392B defined by the housing of the lamp assembly 308. A bight 390 of the cord 336 extends along the outside surface of the housing between the first lumen 392A and the second lumen 392B. A first bend 389A is formed in the cord 336 between the first lumen 392A and the bight 390. A second bend 389B is formed in the cord 336 between the second lumen 392B and the bight 390.
Referring to FIG. 19, an embodiment of reinforced decorative-lighting wire or cord 1100 is depicted. In an embodiment, reinforced decorative-lighting wire 1100 includes one or more reinforcing strands or threads 1102, one or more conductor strands 1104, and insulating layer or jacket 1106. Conductor strands 1104 may form one or more layers, such as the depicted first conductor layer 1108 and second conductor layer 1110. As will be described further below, reinforcing strands 1102 and conductor strands 1104 may be arranged in a variety of manners, and in a variety of quantities, dependent upon a number of factors, including desired wire properties, including, but not limited to, tensile strength, resistivity and conductivity.
Reinforced decorative-lighting wire 1100 may comprise a variety of sizes, resistances, and ampacities, and may be described in terms of electrically-equivalent wire gauge standards, e.g., 20 AWG (American Wire Gauge), 22 AWG, 24 AWG, etc. For example, in an embodiment, wire 1100 may comprise a conductive equivalent to a wire normally described as a 22 AWG wire having an equivalent cross sectional area of conductive copper of approximately 0.326 mm2 and having a typical resistance of approximately 52.96 ohms/km, though the overall diameter of the complete wire may be greater than a standard 22 AWG wire due to the additional reinforcing strands.
Reinforced decorative-lighting wire 1100 may also be described in terms of other equivalent wire standards, such as Underwriter's Laboratories Standard UL 62 insofar as it pertains to decorative-lighting wire, including standards directed to Type XTW or Type CXTW as typically used in decorative-lighting applications. For example, an embodiment of a reinforced decorative-lighting wire 1100 may be designed to include characteristics equivalent to selected characteristics of an 18, 20 22, 25, or 25 AWG CXTW wire, particularly conductive characteristics such as DC resistance per conductor strand, and insulative characteristics.
As depicted in FIG. 19, an embodiment of reinforced decorative-lighting wire 1100 comprises a single reinforcing strand 1102, and multiple conductor strands 1104. In an embodiment, conductor strands 1104 form two layers: first conductor layer 1108 and second layer 1110, though it will be understood that conductors 1104 may form one, two, or more than two layers. Layers 1108 and 1110 form a stranded conductor of reinforced wire 1100. A reinforced wire 1100 having the stranded conductor comprising multiple conductor strands 1104 may also be referred to as a “single” conductor reinforced wire 1100 to differentiate from standard twisted pairs of wires typically used in decorative lighting. However, it will be understood that in some applications, pairs of single-conductor reinforced wires 1100 may be twisted about one another to form reinforced twisted-pair wire sets.
In an embodiment, and as depicted, reinforcing strand 1102 extends axially along a length of wire 1100, and along central wire Axis A, surrounded by, or adjacent to, conductor strands 1104. In an embodiment, reinforcing strand 1102 is generally located radially at a center of wire 1100.
Reinforcing strand 1102 may define a generally cylindrical shape defining a circular cross-sectional area, though the cross-sectional area may define other shapes, such as square, oval, rectangular, and so on. In other embodiments, and as will be described further below with respect to FIG. 20B, reinforcing strand 1102 may define a generally circular cross-sectional shape prior to assembly into wire 1100, but then define a different, shape, such as an asymmetrical shape, after a manufacturing assembly process.
In an embodiment, central reinforcing strand 1102 comprises one or more fibers or strands of fibrous reinforcing material. In the depicted embodiment, reinforcing strand 1102 comprises a single strand or fiber of reinforcing material. In other embodiments, reinforcing strand 1102 comprises multiple strands of reinforcing material that may comprise twisted strands, threads or fibers such that reinforcing strand 1102 comprises a yarn of multiple strands or fibers.
In the embodiment depicted, reinforcing strand 1102 comprises a single 1500 Denier fiber having an outside diameter of approximately 0.45 mm. In another embodiment, reinforcing strand 1102 comprises a fiber ranging from 500 Denier to 2500 Denier. In other embodiments, reinforcing strand 1102 may comprise a larger or smaller diameter and/or greater or lesser Denier fiber depending on the properties of the reinforcing material and desired reinforcing properties. In an embodiment, reinforcing strand 1102 comprises a single or multi-fiber strand sized to be within the range of 1000 to 1500 Denier. Reinforced wire 1100 with reinforcing strands 1102 comprising such a size may provide appropriate reinforcing strength for wires 1100 that most decorative lighting applications that would typically use an 118-24 AWG standard wire.
The reinforcing material of reinforcing strand 1102 may comprise a generally non-conductive or nonmetallic material, such as a plastic or polymer, including a polyester or polyethylene (PE) material. In one such embodiment, reinforcing strand 1102 comprises a polyethylene terephthalate (PET) material. Other reinforcing materials may include, though will not be limited to, polystyrene, polyvinyl chloride (PVC), polyamide (PA), and so on. Reinforcing strand 1102 may consist entirely or substantially of a non-conductive or nonmetallic material, such as PET, though in some embodiments, reinforcing strand 1102 may comprise a composite material. Such a composite material may comprise a non-conductive material, such as PET, as well as some other conductive, partially-conductive, or other non-conductive material.
In an embodiment, and as depicted, reinforcing strand 1102 comprises a substantially solid structure in cross section (radially), as compared to a hollow core strand such as a pipe or other annular shape. Further, in an embodiment, reinforcing strand 1102 comprises the same material continuously along its axial length. In an embodiment, reinforcing strand 1102 may have a hardness that is less than a hardness of a conductor strand 1104. In an embodiment, reinforcing strand 1102 has a Rockwell hardness of R117.
In an embodiment, reinforcing strand 1102 comprises primarily a PET material, having a specific gravity ranging from 1380-1405 kg/m3, and a melting point of 200-250 degrees Celsius. In other embodiments, reinforcing strand 1102 comprises a polymer having a specific gravity that ranges from 1000-2000 kg/m3, and a melting point of 1150-300 degrees Celsius. Material in such a range may provide an appropriate balance of strength and flexibility for decorative light string applications. Further, as will be explained further below, such properties allow for deformation of reinforcing strand 1102 during the manufacturing assembly process.
In an embodiment, wherein reinforcing strand 1102 comprises primarily a PET material, strand 1102 comprises an elongation at break of 300%, or may comprise an elongation range of 200% to 400%, and a tensile strength of 55 MPa (7,977 psi). Herein, tensile strength refers to its ordinary meaning as understood in the field of conductive wires, including tensile strength being the maximum amount of stress that wire 1100 can withstand before failing or breaking, while being stretched or pulled axially along axis A (along a length of wire 1100) by opposing axial forces labeled F1 and F2 in FIG. 19.
In another embodiment wherein strand 1102 comprises a PET material, an elongation property of strand 1102 ranges from 200% to 400%, and a tensile strength ranges from 45 to 65 MPa. In an embodiment, the elongation of strand 1102 may be less than an elongation of conductor strand 1104. In another embodiment, the elongation of a strand 1102 may be approximately the same as, or greater than, a conductor strand 1104. In an embodiment, the tensile strength of a strand 1102 may be less than the tensile strength of a conductor strand 1104. In another embodiment, the tensile strength may be approximately the same as, or greater than, a conductor strand 1104. In an embodiment, the elongation of a strand 1102 may be less than the overall elongation of reinforced wire 1100. In another embodiment, the elongation may be approximately the same as, or greater than, reinforced wire 1100. In an embodiment, the tensile strength of a strand 1102 may be less than the overall tensile strength of reinforced wire 1100. In another embodiment, the tensile strength may be approximately the same as, or greater than, reinforced wire 1100.
Conductor strands 1104 may comprise any number of known conductive materials, including metals and metal alloys, such as copper, aluminum, steel, nickel, aluminum, and so on. Embodiments of alloys may include copper aluminum alloy, copper steel alloy, and so on. In an embodiment, one or more conductor strands comprise soft-annealed copper strands, which may be uncoated, or in some embodiments, coated with tin. Conductor strands 1104 comprised of copper, including comprised primarily of copper, provide not only superior tensile strength, but also superior ductility properties as compared to conductor strands 1104 comprising other metals, such as aluminum. A relatively higher ductility deriving from the use of copper conductor strands 1104, in combination with a polymer reinforcing strand 1102, allows deformation, particularly elongation when wire 1100 is subjected to tensile stress. Such a feature provides advantages in decorative lighting. In contrast, stranded conductors commonly used in overhead power line applications typically rely on aluminum conductors having low ductility, resulting in low elongation. In such an application, sagging of the heavy power lines/conductors is a concern, and the desirable low ductility or inability to elongate, is an important consideration. On the other hand, in decorative lighting, the ability of a wire to deform or elongate (relatively high ductility, e.g., the ductility of copper) may be advantageous. For example, when subjected to a tensile stress or force, wire 1100 may elongate rather than break, thereby preventing exposure of conductor strands 1104, and preventing a potentially hazardous situation. Elongation properties of reinforced decorative lighting wire 1100 are discussed further below.
Further, properties of high tensile strength, flexibility, and the ability to stretch or elongate when subjected to axial pulling may be advantageous for reinforced wire 1100 when applied to a decorative lighting apparatus. Unlike cables and wires used in overhead power transmission applications, wires used in decorative lighting applications tend to be supported over much of their length. For example, decorative light strings applied to trees, such as Christmas trees, are generally affixed to the branches of the tree and are well supported, with only very short runs of wire that are unsupported. Conversely, in overhead power transmission applications, extremely long lengths of wire are unsupported between power poles. Consequently, the materials and properties of cables and wires for such power transmission applications may be significantly different than those of reinforced decorative lighting wire 1100 as described herein.
In addition to ductility, tensile strength of conductor strands 1104 and associated conductor layers 1106 and 1108, as well as overall tensile strength of reinforced wire 1100 remains a consideration. In an embodiment of reinforced wire 1100 comprising soft-annealed copper conductor strands 1104, a tensile strength of each copper strand 1104 will have a higher tensile strength, for example, ranging from 200-250 N/mm2, as compared to aluminum alloys, for example, 100 N/mm2. In an embodiment, each conductor strand 1104 has a tensile strength that is less than a tensile strength of reinforcing strand 1102. In one such embodiment, conductor strands 1104 comprise a copper material, and reinforcing strand 1102 comprises PET.
In an embodiment, each conductor strand 1104 comprises a continuous, solid-core strand, though the entire wire 1100 comprises a multi-stranded wire. In other embodiments, each conductor strand 1104 may comprise multiple, individual strands. In an embodiment, all strands have approximately the same average diameter.
In a stranded conductor embodiment of wire 1100, individual conductor strands comprise 27 to 36 AWG copper conductor strands. In an embodiment, conductor strands comprise 27 AWG strands. In an embodiment, conductor strands comprise copper strands having diameters measuring, on average, 0.16 mm (34 AWG, or 0.16 AS). In other embodiments, copper strands comprise other diameters, including strands that have average diameters of 0.16 mm, or average diameters of approximately 0.16 mm, such as 0.16 mm+/−10%. In another embodiment, average diameters of copper strands used in a single wire 1100 range from 0.15 mm to 0.16 mm, or in another embodiment 0.25 mm+/−10%. In decorative lighting applications, a relatively wide range or tolerance in strand diameter may be sufficient due to a common practice of operating decorative light strands at currents significantly below maximum safe ampacity limits. Conductor strands 1104 may comprise copper strands complying with ASTM B 3-90 standards.
Conductor strands 1104 extend axially along Axis A, and may or may not be twisted about reinforcing strand 1102 or other conductor strands 1104.
Conductor strands 1104 may generally be cylindrical, presenting a generally circular cross section, though in other embodiments, each strand 1104 may present other cross-sectional shapes.
The number of conductor strands 1104 may vary based on a combination of factors, including desired conductive properties, and mechanical design characteristics. For example, for a 22 AWG equivalent wire, which in the decorative lighting industry may typically comprise 116 copper strands, reinforced decorative-lighting wire 1100 may also comprise 116 conductor strands. In another embodiment reinforced wire 1100 may be equivalent to 25 AWG in its current-carrying capability (maximum of 0.73 A), and may comprise 8 conductor strands, which in an embodiment comprises (8) 0.16 mm diameter strands. In other embodiments of 25 AWG equivalent wire, reinforced wire 1100 may include 8-10 conductor strands 1104; in an embodiment, each conductor strand 1104 may have a diameter averaging 0.16 mm, or alternatively, 0.157-0.154 mm.
In other embodiments of wire 1100, which in an embodiment may comprise 24 AWG equivalent wire, reinforced wire 1100 may include 8 conductor strands 1104; in an embodiment, each conductor strand 1104 may have a diameter averaging 0.16 mm, or alternatively, 0.157-0.154 mm.
In embodiments, the above configurations of strands 1104 may be combined with polymer reinforcing strands 1102 sized to fall within a range of 1000 to 1500 Denier.
The number of conductor strands 1104 may be greater or fewer than that of an equivalent wire having similar conductive properties, though it will be understood that particular embodiments of wire 1100 are intended to match the electrical or conductive properties of equivalent standard wires described by the American Wire Gauge standard, e.g., 22 AWG wire, such that even if the number of strands is not equal to the number of strands in an equivalent standard wire, the size of each conductor strand 1104 will be increased or decreased to maintain electrical equivalence. An embodiment of a reinforced decorative wire 1100 having electrical properties similar or equivalent to a 22 AWG wire will be described below to further clarify and emphasize the above.
Referring also to FIG. 20A and FIG. 20B, in the embodiment depicted, first conductor layer 1108 is formed of multiple conductor strands 1104 twisted about centrally-positioned reinforcing fiber 1102. In the depicted embodiment, first conductor layer 1108 comprises five conductor strands 1104. In other embodiments, first conductor layer 1108 comprises more or fewer strands. In an embodiment, the number of strands 1104 in first conductor layer 1108 ranges from three strands to eight strands.
Strands 1104 extend axially along Axis A and in an embodiment, are twisted about reinforcing strand 1102. As depicted, strands 1104 are helically twisted about reinforcing strand 1102 in a counter-clockwise direction, though in other embodiments, strands 1104 may be twisted or wrapped about reinforcing wire 1102 in a clockwise direction.
Central axes of conductor strands 1104 are depicted in FIGS. 19, 20A and 20B by arrows B1′-B5 (first layer 1108) and C1-C11 (second layer 1110).
The twist or “pitch” of conductor strands 1104 may be defined by a “length of lay”, or the length of conductor strand 1104 required to turn a full rotation, or turn 360 degrees. As compared to standard gauge wire having equivalent electrical properties, wire 1100 of the claimed invention may have lesser lengths of lay when the same number of conductor strands 1104 are used. For example, in an embodiment of a 22 AWG equivalent wire, a length of lay of a conductor strand 1104 of first layer 1108 is approximately 118.5 mm, as compared to approximately 32 mm for an equivalent standard 22 AWG wire commonly used for decorative lighting. The additional twists per unit of length, or decreased length of lay provides axial reinforcing strength in addition to the reinforcing strength added by reinforcing strands 1102.
Furthermore, the shorter length of lay may allow further stretching and elongation of wire 1100 without breakage when subjected to axial opposing forces, such as F1 and F2 as depicted in FIG. 19.
In an embodiment, conductor strands 1104 of layer 1108 each have an approximately equal length of lay, though in other embodiments, including some described further below, conductor strands 1104 may have different lengths of lay.
Additionally, unlike typical wires used in decorative lighting that comprise only conductive strands, i.e., no reinforcing strand, the use of one or more reinforcing strands 1102 in wire 1100 may allow for some slight radial compression of strands 1102 by conductor strands 1104 when wire 1100 is subjected to axial forces. This provides the added advantage of allowing wire 1100 to elongate even further than a typical decorative lighting wire of a similar wire gauge and ampacity.
Second conductor layer 1110 is formed on first conductor layer 1108, and also comprises a plurality of conductor strands 1104. In an embodiment, and as depicted, second conductor layer 1110 comprises eleven conductor strands 1104. In other embodiments, second conductor layer 1110 comprises more or fewer strands 1104. In an embodiment, the number of conductor strands 1104 in second layer 1110 ranges from four strands to 30 strands.
Strands 1104 extend axially along Axis A, and are adjacent strands 1104 of first layer 1108. In an embodiment, strands 1104 of second layer 1110 are adjacent to, and twisted about first layer 1108. As depicted, strands 1104 are twisted about layer 1108 and its strands 1104 in a counter-clockwise direction. As such, in an embodiment, conductor strands 1104 of second conductor layer 1110 twists in the same direction as the direction that conductor strands 1104 of second conductor layer 1108 twist. In other embodiments, strands 1104 may be twisted over layer 1108 in a clockwise direction, and may twist in a direction opposite to a twist direction of first conductor layer 1110. Strands 1104 forming conductor layer 1108 generally are positioned adjacent one another.
In an embodiment, conductor strands 1104 of layer 1110 each have an approximately equal length of lay, though in other embodiments, including some described further below, conductor strands 1104 may have different lengths of lay.
Insulating layer (or jacket) 1106 wraps about second conductive layer 1110, covering and insulating conductor strands 1104 and reinforcing strand 1102. Insulating layer 1106 may comprise any of a variety of known insulating materials, including polymers such as PVC, PE, thermoplastics, and so on. In addition to providing insulative properties, insulating layer 1106 may add mechanical strength through its other properties. In an embodiment, insulating layer 1106 has a minimum elongation percentage of 150%. In an embodiment, insulating layer 1106 comprises a polymer having a composition different than the polymer comprising reinforcing strand 1102.
Referring still to FIG. 39, in an embodiment, wire 1100 comprises a reinforced 22 AWG-electrically-equivalent wire comprising a single reinforcing strand 1102 extending axially along a center of wire 1100, surrounded by 116 twisted conductor strands 1104, and overlaid with an insulating jacket layer 1106. The 116 conductor strands 1104 comprise first conductive layer 1108, consisting of 5 conductive strands 1104, and second conductive layer 1110, consisting of 11 conductive strands 1104. In an embodiment, reinforcing strand 1102 comprises PET material in the form of a 11500 Denier strand; conductive strands 1104 comprise primarily copper; and insulating layer 1106 comprises PVC.
Each conductive strand 1104 defines an approximately 0.16 mm diameter, circular or round wire, such that the equivalent cross-sectional area of the conductive portion of wire 1100 is approximately the same as a standard 22 AWG wire, also denoted as 116/0.16 AS, meaning 116 strands of 0.16 mm diameter conductor strands. In this embodiment, the resistivity ranges from 54 to 57 ohms/km. In an embodiment, the resistivity is 56.8 ohms/km or less. In an embodiment, the resistivity is substantially 55 ohms/km.
The length of lay, sometimes referred to as lay of strand, of each conductor strand 1104 of first layer 1108, in an embodiment is 32 mm or less. In an embodiment, the length of lay of conductor strand 1104 of first layer 1108 ranges from 15 mm to 25 mm. In an embodiment, the length of lay of conductor strands 1104 of first layer 1108 is approximately 18.5 mm. In an embodiment the length of lay of all conductor strands 1104 of first layer 1108 are approximately the same. In an embodiment, a lineal length of each strand per unit length is within 5% of an average lineal length (note: the lineal length of a strand will be longer than a unit length due to the helical twisting of a wire, e.g., a 1 foot length of wire 1100 will include strands 1104 having lineal lengths longer than 1 ft. In other embodiments, the lineal length of individual strands 1104 may vary more substantially per unit length of wire 1100, particularly when lengths of lay of individual strands 1104 are allowed to vary from strand to strand.
The length of lay of conductor strands 1104 of second conductive layer 1110 may be the same as conductor strands 1104 of first conductor layer 1108, or in some embodiments, may be different. In an embodiment a length of lay of conductor strands 1104 of second layer 1110 is 32 mm or less. In an embodiment, the length of lay of conductor strand 1104 of second layer 1110 ranges from 15 mm to 25 mm. In an embodiment, the length of lay of conductor strands 1104 of second layer 1110 is substantially 18.5 mm. In an embodiment, lengths of lay of conductor strands 1104 of both layers 1108 and 1110 are, on average, approximately 18.5 mm. In an embodiment, the direction of twisting is the same, as depicted in FIG. 19.
In an embodiment, including an embodiment of 22 AWG reinforced wire 1100, insulation layer 1106, comprising primarily PVC material, has a minimum thickness of 0.69 mm. In an embodiment, insulation 1106 comprises a thickness ranging from 0.69 mm to 1.0 mm. In an embodiment, an average thickness of insulating layer 1106 has an average thickness of 0.76 mm or greater. In one such embodiment, insulating layer 1106 has an average thickness of 0.84. In an embodiment insulating layer 1106 has an insulation resistance of at least 225 MΩ/Kft.
In an embodiment, the overall diameter of wire 1100 in 22 AWG ranges from 2.40 to 2.70 mm. In an embodiment, an average overall diameter is approximately 2.6 mm; in an embodiment, an average overall wire 1100 diameter is 101 mil.
With respect to elongation, in an embodiment, wire 1100 has an elongation of 150% or greater. In an embodiment, the elongation of wire 1100 ranges from 150% to 400%. In one embodiment, wire 1100 exhibits 300% elongation, significantly longer than standard, all-copper multi-stranded 22 AWG CXTW wire.
With respect to tensile strength, embodiments of wire 1100 have an improved tensile strength, which in one embodiment includes a tensile strength of 1,500 PSI or greater. In an embodiment, the tensile strength ranges from 1,500 PSI to 4,000 PSI, in another embodiment, the tensile strength ranges from 2,500 to 3,500 PSI. Such a range may provide sufficient strength for various decorative lighting applications, including trees, net lights, sculptures, and so on. In some applications where wires are affixed tightly to supporting structure, such as trees of metal frames, a required tensile strength may be on the lower end of the range, while wires of light strings that are not affixed to, or are less supported, may require higher tensile strength due to possible pulling or yanking by a user.
Another method of describing and measuring “strength” of a wire, including a reinforced wire 1100, and as commonly used in decorative lighting is to measure an axially-applied pulling force required to cause the wire to begin to break, such that an outer insulation shows breakage, or an inner conductor shows breakage. In an embodiment, reinforced wire 1100 may withstand axial pulling forces of various ranges depending on the particular reinforced wire 1100 configuration.
In an embodiment, reinforced wire 1100 may withstand a minimum axially-applied pulling force ranging from 22 lbf to 46 lbf. In one such embodiment, reinforced wire 1100 comprises an ampacity equivalent to a 22 AWG wire, and can withstand a minimum 22.4 lbf without breaking; in another embodiment, reinforced wire 1100 comprises an ampacity equivalent to a 20 AWG wire, and can withstand a minimum 30 lbf without breaking; in another embodiment, reinforced wire 1100 comprises an ampacity equivalent to a 18 AWG wire, and can withstand a minimum 46 lbf without breaking.
In another embodiment, reinforced wire 1100 comprises 7-10 conductor strands 1104 defining a range of minimum axial pulling force ranging from 22.4 lbf to 46 lbf. In one such embodiment, reinforced wire 1100 comprises 8 conductor strands and has a minimum axial pulling force at breakage of 46 lbf; in one such embodiment, each conductor strand 1104 may have an average diameter in the range of 0.15 mm to 0.17 mm; alternatively, each conductor strand 1104 may have an average diameter of 0.154 mm to 0.157 mm. Such ranges accommodate expected current flows in various decorative lighting applications, while offering substantial overall tensile strength.
In an embodiment, wire 1100 includes a 1500 Denier PET reinforcing strand 1102 extending axially along Axis A, 16 copper conductor strands of 0.16 mm average diameter (5 first layer 1108 strands and 11 second layer 1110 strands) having a 55 Ω/km resistivity, and insulating layer 1106 of PVC material. In one such embodiment, elongation is greater than 300% (in an embodiment is 306%), with a tensile strength of 2800 PSI, requiring a force of approximately 21 kg to break. Such a wire may be used as a substitute for standard 22 AWG wire, including 22 AWG CXTW wire for improved decorative-lighting applications.
Referring to FIG. 20B, the wire 1100 of FIGS. 19 and 20A is depicted again, but in this case, the configuration of wire 1100, namely the relative positions of conductor strands 1104 and reinforcing strand 1102, are somewhat different. In an embodiment, because of the malleable properties of reinforcing strand 1102, including the fibrous nature, pliability, and so on, during manufacturing of wire 1100, reinforcing strand 1102 may be deformed somewhat, which in turn, may cause first and second layer strands 1108 and 1110 to move relative to one another, and relative to reinforcing strand 1102. As depicted in FIG. 20B, at a particular cross section, reinforcing strand 1102 does not comprise a circular cross section, but rather, comprises another shape due to deformation. Such “deformation”, may actually be the result of radial displacement of individual strands or fibers of reinforcing strand 1102 that occur when layers of conductor strands 1104 are wound or twisted about generally central reinforcing strand 1102. Such variation, may be caused by radial movement or deformation of reinforcing strand 1102 and may vary axially, or along a length of wire 1100. Consequently, while FIG. 20A depicts an ideal embodiment of wire 1100 in cross section, in other embodiments wire 1100 may comprise the relative structure depicted in FIG. 20B, or some other similar structure. As such, embodiments of reinforced decorative wire 1100 may include a central reinforcing strand that may only be substantially, or mostly centrally located. Further, in such an embodiment, conductor strands 1104 may not be evenly spaced about reinforcing strand 1102, as depicted, nor will strands 1104 of layer 1110 be evenly spaced about layer 1108.
As described above, embodiments of wire 1100 are not limited to the 1-5-11 configuration described above (1 reinforcing strand 1102, 5 first layer conductors 1105 and 11 second layer conductors 1110).
Although embodiments of reinforced wire 1100 may comprise multi-layer conductor strand embodiments, such as those depicted in FIGS. 19-20B, embodiments of reinforced wire 1100 may include only a single layer of conductor strands 1104 and a single reinforcing strand 1102. Some such embodiments will be further described below, and may include the following embodiments: 10 conductor strands 1104 with a single reinforcing strand 1102, which in an embodiment includes 0.15-0.16 mm diameter strands 1104 and 1000 Denier strand 1102; 9 conductor strands 1104 with a single reinforcing strand 1102, which in an embodiment includes 0.15-0.16 mm diameter strands 1104 and 1000 Denier strand 1102; 8 conductor strands 1104 with a single reinforcing strand 1102, which in an embodiment includes 0.15-0.16 mm diameter strands 1104 and 1500 Denier strand 1102; and 7 conductor strands 1104 with a single reinforcing strand 1102, which in an embodiment includes 0.15-0.16 mm diameter strands 1104 and 1500 Denier strand 1102. In some such 7, 8, 9, or 110 stranded embodiments, when fewer conductor strands 1104 are used, a larger diameter and stronger reinforcing strand 1102 may be included to make up for the decrease in tensile strength due to fewer conductor strands 1104.
Referring to FIG. 21, another embodiment of reinforced decorative-lighting wire 1100 is depicted. This alternate embodiment of wire 1100 is substantially the same as the embodiment depicted in FIGS. 19, 20A and 20B, and described above, with the exception of reinforcing strands 1102. In this embodiment, rather than a single reinforcing strand 1102, wire 1100 includes three reinforcing strands 1102 a, 1102 b, and 1102 c. Reinforcing strands 1102 a-102 c extend axially through the center portion of wire 1102. Strands 1102 a-102 c may or may not be twisted about one another. Twisting multiple strands 1102 may provide an additional reinforcing strength.
In an embodiment, fewer than three strands 1102, namely two strands may be used. In other embodiments, greater than three strands 1102 may be used.
In an embodiment, the cross-sectional area of the three reinforcing strands 1102 a, 1102 b, and 1102 c is equivalent to the 1500 Denier strand described above with respect to the embodiment of FIGS. 19, 20A and 20B. In other embodiments, the size of reinforcing strands 1102 may be larger or smaller, depending on desired wire 1100 strength, with larger size strands and/or more strands 1102 being used for stronger reinforced wire 1100.
Referring to FIG. 22, another embodiment of wire 1100 is depicted. In this embodiment, wire 1100 still includes multiple reinforcing strands 1102, first conductor layer 1108 comprising multiple conductors 1104, second conductor layer 1110 comprising multiple conductors 1104, and outer insulating layer 1106. In the depicted embodiment, first conductor layer 1108 includes five conductors 1104 and second conductor layer 1110 includes eleven conductors 1104, similar to the embodiments described above with respect to FIGS. 19-21. However, in this embodiment, wire 1100 includes four reinforcing strands 1102.
As depicted, first conductor layer 1108 actually includes a single, central conductor 1104 a surrounded by four outer conductors 1104 b, 1104 c, 1104 d, and 1104 e. Between each outer conductor 1104 b, 1104 c, 1104 d and 1104 f is a reinforcing strand 1102. Second conductor layer 1110 is adjacent both the four conductors 1104 b-e, and the four reinforcing strands 1102.
Embodiments of the invention are not intended to be limited to the specific patterns and structures depicted in FIGS. 19-22. It will be understood that the number of conductors 1104, number of reinforcing strands 1102, and their combinations, may vary.
As described above, embodiments of the disclosure include a number of decorative lighting assemblies that are tangle resistant and easier to manufacture as compared to known decorative lighting structures. Various embodiments include, but are not limited to the following embodiments:
Embodiment 1
A decorative lighting assembly, comprising:
a first power wire electrically connected to a first power contact;
a second power wire electrically connected to a second power contact;
the first power wire and the second power wire cooperating to surround a display area of the decorative lighting assembly;
a plurality of lamp assemblies distributed across the display area, the plurality of lamp assemblies including a first row of lamp assemblies aligned along a first line, a second row of lamp assemblies aligned along a second line, a third row of lamp assemblies aligned along a third line, and a fourth row of lamp assemblies aligned along a fourth line;
a first cord disposed along a first zig-zag path mechanically coupling the lamp assemblies in the first row with the lamp assemblies in the second row;
a plurality of intermediate wires disposed along a second zig-zag path mechanically coupling and electrically connecting the lamp assemblies in the second row with the lamp assemblies in the third row; and
a second cord disposed along a third zig-zag path mechanically coupling the lamp assemblies in the third row with the lamp assemblies in the fourth row.
Embodiment 2
The decorative lighting assembly of Embodiment 1, wherein the display area has a shape generally corresponding to a four-sided polygon.
Embodiment 3
The decorative lighting assembly of Embodiment 2, wherein the shape of the display area generally corresponds to a rectangle having a first long side, a second long side, a first short side, and a second short side.
Embodiment 4
The decorative lighting assembly of Embodiment 3, wherein:
the first power wire defines the first short side and the first long side of the rectangle; and the second power wire defines the second short side and the second long side of the rectangle.
Embodiment 5
The decorative lighting assembly of Embodiment 1, further comprising a fifth row of lamp assemblies aligned along a fifth line and a plurality of intermediate wires disposed along a zig-zag path connecting the lamp assemblies in the fourth row with the lamp assemblies in the fifth row.
Embodiment 6
The decorative lighting assembly of Embodiment 1, further comprising a zeroth row of lamp assemblies aligned along a zeroth line and a plurality of intermediate wires disposed along a zeroth zig-zag path connecting the lamp assemblies in the zeroth row with the lamp assemblies in the first row.
Embodiment 7
The decorative lighting assembly of Embodiment 1, further comprising a first connector that mechanically couples a first end of a cord to the first power wire and a second connector that mechanically couples a second end of the cord to the second power wire.
Embodiment 8
The decorative lighting assembly of Embodiment 7, wherein the first connector forms an electrical connection between two portions of the first power wire and the second connector forms an electrical connection between two portions of the second power wire.
Embodiment 9
The decorative lighting assembly of Embodiment 1, wherein the first power wire and the second power wire comprise reinforced wire.
Embodiment 10
The decorative lighting assembly of Embodiment 9, wherein the intermediate wires comprise reinforced wire.
Embodiment 11
The decorative lighting assembly of Embodiment 10, wherein the reinforced wire comprises:
a longitudinally-extending reinforcing strand, the reinforcing strand comprising one or more fibers comprising a polymer material;
a plurality of conductor strands wound about the reinforcing strand; and
an outer insulating layer adjacent to, and covering, one or more of the conductor strands.
Embodiment 12
The decorative lighting assembly of Embodiment 1, wherein:
the first power wire comprises 18 AWG wire;
the second power wire comprises 18 AWG wire; and
the intermediate wires comprise 22 AWG wire.
Embodiment 13
The decorative lighting assembly of Embodiment 1, wherein:
the first power wire comprises 18 AWG wire;
the second power wire comprises 18 AWG wire; and
the intermediate wires comprise 22 AWG reinforced wire.
Embodiment 14
The decorative lighting assembly of Embodiment 1, wherein:
the first power wire comprises 18 AWG wire;
the second power wire comprises 18 AWG wire; and
the intermediate wires comprise 25 AWG reinforced wire.
Embodiment 15
The decorative lighting assembly of Embodiment 1, wherein:
the intermediate wires have a first outer diameter;
the at least one cord has a second outer diameter; and
the second outer diameter is substantially equal to the first outer diameter so that the decorative lighting assembly has a uniform appearance.
Embodiment 16
The decorative lighting assembly of Embodiment 1, wherein:
the intermediate wires comprise a plurality of conductor strands and an outer insulating layer adjacent to, and covering, one or more of the conductor strands;
the at least one cord comprises a solid strand; and
the insulating layer of the intermediate wires and the solid strand comprise the same material so that the decorative lighting assembly has a uniform appearance.
Embodiment 17
The decorative lighting assembly of Embodiment 1, wherein:
the intermediate wires comprise a plurality of conductor strands and an outer insulating layer adjacent to, and covering, one or more of the conductor strands;
the at least one cord comprises a solid strand; and
the insulating layer of the intermediate wires and the solid strand are substantially the same color so that the decorative lighting assembly has a uniform appearance.
Embodiment 18
The decorative lighting assembly of Embodiment 1, wherein a first series circuit of the decorative lighting assembly comprises:
a first lamp assembly electrically connected to the first power wire;
an nth lamp assembly connected to the second power wire; and
a plurality of intermediate lamp assemblies electrically connected in series between the first lamp assembly and the nth lamp assembly.
Embodiment 19
The decorative lighting assembly of Embodiment 18, further comprising a first connector electrically connecting a first end of the series circuit to the first power wire.
Embodiment 20
The decorative lighting assembly of Embodiment 19, further comprising a second connector electrically connecting a second end of the series circuit to the second power wire.
Embodiment 21
The decorative lighting assembly of Embodiment 20, wherein the second connector mechanically couples one end of a cord to the second power wire.
Embodiment 22
The decorative lighting assembly of Embodiment 21, wherein the first series circuit follows a winding path between the first connector and the second connector so that the lamp assemblies are distributed across a portion of the display area.
Embodiment 23
The decorative lighting assembly of Embodiment 22, wherein the winding path of the first series circuit comprises the plurality of intermediate wires disposed along the first zig-zag path connecting the lamp assemblies in the first row with the lamp assemblies in the second row.
Embodiment 24
The decorative lighting assembly of Embodiment 23, wherein at least one cord extends between pairs of lamp assemblies that are adjacent to one another physically and are not adjacent to one another in the first series circuit.
Embodiment 25
The decorative lighting assembly of Embodiment 1, wherein the at least one cord forms a connection with each of the lamp assemblies in the second row, each connection comprising a portion of the at least one cord extending through a loop.
Embodiment 26
The decorative lighting assembly of Embodiment 1, wherein a loop of wire is fixed to each of the lamp assemblies in the second row and the at least one cord extends through the loop of wire fixed to each of the lamp assemblies in the second row.
Embodiment 25
The decorative lighting assembly of Embodiment 1, wherein the at least one cord forms a connection with each of the lamp assemblies in the second row, each connection comprising a tortuous path defined by each lamp assembly and a portion of the at least one cord extending through the tortuous path.
Embodiment 26
The decorative lighting assembly of Embodiment 25, wherein the portion of the at least one cord extends through a first eye defined by a lamp holder of each lamp assembly and a second eye defined by a lamp holder of each lamp assembly.
Embodiment 27
The decorative lighting assembly of Embodiment 26, wherein a bight of the portion of the at least one cord extends along an outer surface of the lamp holder between the first eye and the second eye.
Embodiment 28
The decorative lighting assembly of Embodiment 27, wherein the portion of the at least one cord includes a first bend disposed between the first eye and the bight.
Embodiment 29
The decorative lighting assembly of Embodiment 27, wherein the portion of the at least one cord includes a second bend disposed between the second eye and the bight.
Embodiment 31
A decorative lighting assembly, comprising:
a first power wire electrically connected to a first power contact;
a second power wire electrically connected to a second power contact;
the first power wire and the second power wire cooperating to surround a display area of the decorative lighting assembly;
a plurality of lamp assemblies distributed across the display area, the plurality of lamp assemblies including a first column of lamp assemblies aligned along a first line, a second column of lamp assemblies aligned along a second line, a third column of lamp assemblies aligned along a third line, and a fourth column of lamp assemblies aligned along a fourth line;
a plurality of intermediate wires disposed along a first zig-zag path connecting the lamp assemblies in the first column with the lamp assemblies in the second column;
at least one cord disposed along a second zig-zag path connecting the lamp assemblies in the second column with the lamp assemblies in the third column; and
a plurality of intermediate wires disposed along a third zig-zag path connecting the lamp assemblies in the third column with the lamp assemblies in the fourth column.
Embodiment 32
The decorative lighting assembly of Embodiment 31, wherein the display area has a shape generally corresponding to a four-sided polygon.
Embodiment 33
The decorative lighting assembly of Embodiment 32, wherein the shape of the display area generally corresponds to a rectangle having a first long side, a second long side, a first short side, and a second short side.
Embodiment 34
The decorative lighting assembly of Embodiment 33, wherein:
the first power wire defines the first short side, the first long side, and the second short side of the rectangle; and
the second power wire defines the second long side of the rectangle.
Embodiment 35
The decorative lighting assembly of Embodiment 31, further comprising a fifth column of lamp assemblies aligned along a fifth line; and
wherein the at least one cord is disposed along a fourth zig-zag path connecting the lamp assemblies in the fourth column with the lamp assemblies in the fifth column.
Embodiment 36
The decorative lighting assembly of Embodiment 35, wherein the at least one cord comprises a single cord that extends through both the first zig-zag path and the fourth zig-zag path.
Embodiment 37
The decorative lighting assembly of Embodiment 36, further comprising a first fastener that mechanically couples a first end of the single cord and a second end of the single cord to the first power wire.
Embodiment 38
The decorative lighting assembly of Embodiment 37, wherein the first power wire extends through a passageway defined by the first fastener.
Embodiment 39
The decorative lighting assembly of Embodiment 36, further comprising a bushing that mechanically couples an intermediate portion of the single cord to the second power wire.
Embodiment 40
The decorative lighting assembly of Embodiment 39, wherein the single cord and the second power wire extend through a passageway defined by the bushing.
Embodiment 41
The decorative lighting assembly of Embodiment 36, wherein the single cord extends through a passageway defined by a clip of each lamp assembly in the second column and each lamp assembly in the third column.
Embodiment 42
The decorative lighting assembly of Embodiment 35, further comprising:
a first top-most intermediate wire that extends between a top-most lamp assembly in the first column and a top-most lamp assembly in the third column; and
a bushing that mechanically couples an intermediate portion of the first top-most intermediate wire to the second power wire.
Embodiment 43
The decorative lighting assembly of Embodiment 31, wherein the first power wire and the second power wire comprise reinforced wire.
Embodiment 44
The decorative lighting assembly of Embodiment 43, wherein the intermediate wires comprise reinforced wire.
Embodiment 45
The decorative lighting assembly of Embodiment 44, wherein the reinforced wire comprises:
a longitudinally-extending reinforcing strand, the reinforcing strand comprising one or more fibers comprising a polymer material;
a plurality of conductor strands wound about the reinforcing strand; and
an outer insulating layer adjacent to, and covering, one or more of the conductor strands.
Embodiment 46
The decorative lighting assembly of Embodiment 31, wherein:
the first power wire comprises 18 AWG wire;
the second power wire comprises 18 AWG wire; and
the intermediate wires comprise 22 AWG wire.
Embodiment 47
The decorative lighting assembly of Embodiment 31, wherein:
the first power wire comprises 18 AWG wire;
the second power wire comprises 18 AWG wire; and
the intermediate wires comprise 22 AWG reinforced wire.
Embodiment 48
The decorative lighting assembly of Embodiment 31, wherein:
the first power wire comprises 18 AWG wire;
the second power wire comprises 18 AWG wire; and
the intermediate wires comprise 25 AWG reinforced wire.
Embodiment 49
The decorative lighting assembly of Embodiment 31, wherein:
the intermediate wires have a first outer diameter;
the at least one cord has a second outer diameter; and
the second outer diameter is substantially equal to the first outer diameter so that the decorative lighting assembly has a uniform appearance.
Embodiment 50
The decorative lighting assembly of Embodiment 31, wherein:
the intermediate wires comprise a plurality of conductor strands and an outer insulating layer adjacent to, and covering, one or more of the conductor strands;
the at least one cord comprises a solid strand; and
the insulating layer of the intermediate wires and the solid strand comprise the same material so that the decorative lighting assembly has a uniform appearance.
Embodiment 51
The decorative lighting assembly of Embodiment 31, wherein:
the intermediate wires comprise a plurality of conductor strands and an outer insulating layer adjacent to, and covering, one or more of the conductor strands;
the at least one cord comprises a solid strand; and
the insulating layer of the intermediate wires and the solid strand are substantially the same color so that the decorative lighting assembly has a uniform appearance.
Embodiment 52
The decorative lighting assembly of Embodiment 31, wherein a first series circuit of the decorative lighting assembly comprises:
a first lamp assembly electrically connected to the first power wire;
an nth lamp assembly connected to the second power wire; and
a plurality of intermediate lamp assemblies electrically connected in series between the first lamp assembly and the nth lamp assembly.
Embodiment 53
The decorative lighting assembly of Embodiment 52, further comprising a first connector electrically connecting a first end of the series circuit to the first power wire.
Embodiment 54
The decorative lighting assembly of Embodiment 53, further comprising a second connector electrically connecting a second end of the series circuit to the second power wire.
Embodiment 55
The decorative lighting assembly of Embodiment 54, wherein the second connector mechanically couples one end of a third cord to the second power wire.
Embodiment 56
The decorative lighting assembly of Embodiment 55, wherein the first series circuit follows a winding path between the first connector and the second connector so that the lamp assemblies are distributed across the display area.
Embodiment 57
The decorative lighting assembly of Embodiment 56, wherein the winding path of the first series circuit includes:
the plurality of intermediate wires disposed along the first zig-zag path connecting the lamp assemblies in the first column with the lamp assemblies in the second column; and
the plurality of intermediate wires disposed along the third zig-zag path connecting the lamp assemblies in the third column with the lamp assemblies in the fourth column.
Embodiment 58
The decorative lighting assembly of Embodiment 52, wherein the at least one cord extends between pairs of lamp assemblies that are adjacent to one another physically and are not adjacent to one another in the first series circuit.
The embodiments above are intended to be illustrative and not limiting. Additional embodiments are within the claims. In addition, although aspects of the present invention have been described with reference to particular embodiments, those skilled in the art will recognize that changes can be made in form and detail without departing from the spirit and scope of the invention, as defined by the claims.
Persons of ordinary skill in the relevant arts will recognize that the invention may comprise fewer features than illustrated in any individual embodiment described above. The embodiments described herein are not meant to be an exhaustive presentation of the ways in which the various features of the invention may be combined. Accordingly, the embodiments are not mutually exclusive combinations of features; rather, the invention may comprise a combination of different individual features selected from different individual embodiments, as understood by persons of ordinary skill in the art.
Any incorporation by reference of documents above is limited such that no subject matter is incorporated that is contrary to the explicit disclosure herein. Any incorporation by reference of documents above is further limited such that no claims included in the documents are incorporated by reference herein. Any incorporation by reference of documents above is yet further limited such that any definitions provided in the documents are not incorporated by reference herein unless expressly included herein.
For purposes of interpreting the claims for the present invention, it is expressly intended that the provisions of Section 112, sixth paragraph of 35 U.S.C. are not to be invoked unless the specific terms “means for” or “step for” are recited in a claim.

Claims (11)

What is claimed is:
1. A rectangular, tangle-resistant decorative net light assembly, comprising:
a power plug at a first corner of the decorative net light assembly and configured to provide power to the net light assembly from an external power source;
a power receptacle at a second corner of the decorative net light assembly and in electrical communication with the power plug, the second corner being opposite to the first corner along a length of the decorative net light assembly;
a first plurality of lamp assemblies electrically connected to one another in electrical series;
a first plurality of 22 AWG reinforced intermediate wires electrically connecting the first plurality of lamp assemblies, each of the first plurality of 22 AWG reinforced intermediate wires electrically connecting a pair of the first plurality of lamp assemblies, the first plurality of 22 AWG reinforced intermediate wires connected to the plurality of lamp assemblies forming a first plurality of rows of the plurality of 22 AWG reinforced intermediate wires connected to the first plurality of lamp assemblies, each row of the plurality of 22 AWG reinforced intermediate wires extending in a widthwise direction from one side of the rectangular display area to an opposite side of the rectangular display area, each of the plurality of 22 AWG reinforced intermediate wires including an internal reinforcing strand, none of the plurality of 22 AWG reinforced intermediate wires having an external reinforcing strand or other reinforcing structure, such that the 22 AWG reinforced intermediate wires are resistant to tangling;
one or more mechanical-connection cords, each of the one or more mechanical-connection cords mechanically connected to lamp assemblies of a row of the plurality of lamp assemblies.
2. The rectangular, tangle-resistant decorative net light assembly of claim 1, wherein one or more of the plurality of rows of 22 AWG reinforced intermediate wires forms a zig-zag pattern.
3. The rectangular, tangle-resistant decorative net light assembly of claim 1, wherein one or more wires form a first side of the rectangular, tangle-resistant decorative net light assembly, the first side extending between the first corner and the second corner.
4. The tangle-resistant decorative net light assembly of claim 3, wherein one or more wires form a third side of the rectangular, tangle-resistant decorative net light assembly.
5. The tangle-resistant decorative lighting assembly of claim 1, wherein the plurality of mechanical-connection cords comprises a color substantially the same as a color of an insulating layer of the plurality of 22 AWG reinforced intermediate wires.
6. The tangle-resistant decorative lighting assembly of claim 1, wherein each of the plurality of 22 AWG reinforced intermediate wires includes a plurality of copper conductor strands, the plurality of copper conductor strands comprising at least eight strands and no more than sixteen strands, comprising a plurality of internal reinforcing strands, and an insulating layer over the plurality of copper conductor strands.
7. The tangle-resistant decorative lighting assembly of claim 6, wherein each of the plurality of internal reinforcing strands comprises a plurality of intertwined fibers.
8. The tangle-resistant decorative lighting assembly of claim 7, wherein the plurality of internal reinforcing strands comprise at least two strands and not more than four strands.
9. The tangle-resistant decorative lighting assembly of claim 6, wherein the insulating layer includes a polymer material, and the reinforcing strand comprises the polymer material.
10. The tangle-resistant decorative lighting assembly of claim 6, wherein the insulating is in contact with the plurality of internal reinforcing strands and with one or more of the plurality of copper conductor strands.
11. The tangle-resistant decorative lighting assembly of claim 8, wherein the insulating is in contact with the plurality of internal reinforcing strands and with one or more of the plurality of copper conductor strands.
US16/368,681 2013-09-13 2019-03-28 Tangle-resistant decorative lighting assembly Active US10711954B2 (en)

Priority Applications (9)

Application Number Priority Date Filing Date Title
US16/368,681 US10711954B2 (en) 2015-10-26 2019-03-28 Tangle-resistant decorative lighting assembly
US16/872,607 US11085595B2 (en) 2013-09-13 2020-05-12 Tangle-resistant decorative lighting assembly
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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US11085595B2 (en) 2013-09-13 2021-08-10 Willis Electric Co., Ltd. Tangle-resistant decorative lighting assembly
US11306881B2 (en) * 2013-09-13 2022-04-19 Willis Electric Co., Ltd. Tangle-resistant decorative lighting assembly
US11415275B1 (en) * 2021-05-26 2022-08-16 Zhuhai Bojay Electronics Co. Ltd. LED light string with single wire and illumination device

Families Citing this family (20)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US9140438B2 (en) 2013-09-13 2015-09-22 Willis Electric Co., Ltd. Decorative lighting with reinforced wiring
US10027181B2 (en) 2015-09-29 2018-07-17 X-Celeprint Limited Layers of safety and failsafe capability for operation of class IV laser in consumer electronics devices
US10982828B1 (en) 2016-08-22 2021-04-20 Willis Electric Co., Ltd. Artificial tree with LED-based lighting systems
WO2018217797A1 (en) * 2017-05-23 2018-11-29 Stange Kurt Trunk Wrap Lighting Device
CN108278566B (en) * 2018-01-31 2019-10-25 江苏飞天照明有限公司 RGB sync smart light string
US10907781B2 (en) 2018-03-09 2021-02-02 Blooming International Limited LED decorative lighting assembly having two parallel conductors and an insulating portion encapsulating portions of the conductors and a space there between
CN108662476A (en) * 2018-05-31 2018-10-16 上犹县嘉亿灯饰制品有限公司 Meshwork lamp and ornament lamp
CN110958731A (en) 2018-09-21 2020-04-03 鸿盛国际有限公司 Light emitting diode parallel circuit
CN111465133A (en) 2019-01-21 2020-07-28 鸿盛国际有限公司 Group-controlled light-emitting diode parallel circuit
US11336066B2 (en) 2019-06-19 2022-05-17 Blooming International Limited Serially-connectable device for electrical cable
CN112582516A (en) 2019-09-27 2021-03-30 鸿盛国际有限公司 Wire lamp packaging structure
USD908933S1 (en) * 2020-08-12 2021-01-26 Hong Wu String lights
US11168851B1 (en) * 2020-09-04 2021-11-09 Zhu Hai Fuyun Lighting Industrial Co., Ltd. Decorative net light structure
CN114165742A (en) 2020-09-11 2022-03-11 鸿盛国际有限公司 Multi-wire light string structure
EP3971467A1 (en) * 2020-09-16 2022-03-23 Zhu Hai Fuyun Lighting Industrial Co., Ltd. Decorative net light structure
USD998831S1 (en) * 2021-01-11 2023-09-12 Wen Du String light
USD1056262S1 (en) * 2021-01-11 2024-12-31 Wen Du String light
USD970760S1 (en) * 2022-07-06 2022-11-22 Jiangxi Aosai Optoelectronics Co., Ltd. Lamp
USD979807S1 (en) * 2022-07-06 2023-02-28 Jiangxi Aosai Optoelectronics Co., Ltd. Lamp
US11940108B1 (en) * 2023-09-27 2024-03-26 Seasons 4, Inc. Expandable icicle light string for spanning structures of various dimensions

Citations (197)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1656148A (en) 1926-04-05 1928-01-10 Harris Mark Artificial christmas tree
US2072337A (en) 1936-05-05 1937-03-02 Nofade Electric Corp Safety lighting circuit
US3289145A (en) 1964-04-09 1966-11-29 Elco Corp Appliance connector
US3302013A (en) 1965-01-04 1967-01-31 Maxwell T Richardson Simulated icicle decorations
US3373397A (en) 1965-10-06 1968-03-12 Amp Inc Electrical connector and insulation housing therefor
GB1150390A (en) 1967-02-22 1969-04-30 Amp Inc Apparatus for Crimping Electrical Connectors to Wires
US3504169A (en) 1967-10-17 1970-03-31 Barron H Freeburger Electric light string kit
GB1245214A (en) 1969-04-29 1971-09-08 Amp Inc Improved tab receptacle electrical connector
US3704366A (en) 1971-09-03 1972-11-28 Lawrence J Korb Outdoor lighted artificial christmas tree
US3723723A (en) 1971-01-04 1973-03-27 Small World Importing Corp Christmas tree electric light decoration set
US3783437A (en) 1971-10-07 1974-01-01 Gen Electric Lamp and socket for decorative string set
US3831132A (en) 1971-04-29 1974-08-20 Molex Inc Crimp terminal for aluminum wire
US3970834A (en) 1974-12-16 1976-07-20 Marion Joseph Smith Artificial tree
US4097917A (en) 1976-06-07 1978-06-27 Mccaslin Robert E Rotatable light display
US4203476A (en) 1979-01-05 1980-05-20 Dayco Corporation Wire reinforced hose
US4262480A (en) 1979-03-01 1981-04-21 Frederick A. Lowenstein Novelty yarn and method and apparatus of making same
GB2137086A (en) 1983-02-25 1984-10-03 Fortunelite Ind Company Limite Christmas tree with integral lamps
US4493523A (en) 1983-10-18 1985-01-15 Challenger Circle F, Inc. Adaptive strain relief for wiring devices
DE8436328U1 (en) 1984-12-12 1985-04-04 Otto, Manfred, 8754 Großostheim PLASTIC FIR TREE WITH CONNECTABLE BRANCHES
US4516193A (en) 1984-04-16 1985-05-07 Murphy James P Lighting system for artificial Christmas tree
GB2172135A (en) 1985-03-08 1986-09-10 Royston Francis Allen Lighting system combined with an artificial tree
US4631650A (en) 1984-10-24 1986-12-23 Ahroni Joseph M Series-parallel connected miniature light set
US4753600A (en) 1987-05-08 1988-06-28 Williams O V Rotatable electrical connector
US4777573A (en) 1988-06-24 1988-10-11 Liao Nan Whair Miniature light set
US4779177A (en) 1984-10-24 1988-10-18 Ahroni Joseph M Series-parallel connected miniature light set
EP0298518A2 (en) 1987-07-10 1989-01-11 Fujikura Ltd. Method for manufacturing a copper-clad steel trolley wire
US4807098A (en) 1984-10-24 1989-02-21 Ahroni Joseph M Lampholders for miniature light sets
US4870547A (en) 1988-10-21 1989-09-26 Crucefix Michael D Christmas tree lights
WO1991010093A1 (en) 1990-01-05 1991-07-11 Ahroni Joseph M Improved chaser decorative light set and miniature light units
US5150964A (en) 1991-06-21 1992-09-29 Tsui Pui Hing Joy light structure
US5159157A (en) 1989-09-12 1992-10-27 Kabelwerke Reinshagen Gmbh Electrical cable with element of high tensile strength
US5216205A (en) 1990-09-28 1993-06-01 Sumitomo Electric Industries, Ltd. Wire conductor for harness
US5281158A (en) 1993-01-11 1994-01-25 Lin Wen Hsiung Light socket and socket adapter
US5372525A (en) 1992-06-09 1994-12-13 Wu; Jeng-Shyong Connector for fastener for Christmas light strings
US5442258A (en) 1994-05-04 1995-08-15 Hakuyo Denkyu Kabushiki Kaisha LED lamp device
US5451842A (en) 1994-03-15 1995-09-19 Chien; Tseng-Lu Electro-luminescent seasonal light apparatus
US5453664A (en) 1994-02-01 1995-09-26 Harris; Geoffrey H. Light string with improved shunt system
US5456620A (en) 1993-07-13 1995-10-10 Chrysler Corporation Connector assembly for lamps
US5481444A (en) 1994-02-16 1996-01-02 Schultz; Thomas J. Miniature light holder
WO1996024966A1 (en) 1995-02-10 1996-08-15 The Whitaker Corporation Sensor connector
WO1996026661A1 (en) 1995-02-28 1996-09-06 Lal, Thakurdas, Nandiram An artificial tree
US5560975A (en) 1994-06-28 1996-10-01 Casper Enterprises, Inc. Decorating system
US5601361A (en) 1994-10-17 1997-02-11 Lawrence; Lonnie Celebration electric light net
CN2254143Y (en) 1996-09-23 1997-05-14 刘世全 Curtain type decoration lamp
US5632550A (en) * 1995-10-03 1997-05-27 Yeh; Ren S. Decorative array lighting system
US5667295A (en) * 1995-09-26 1997-09-16 Neon King Limited Modular honeycomb light and lightbulb module structure
US5702262A (en) 1996-10-04 1997-12-30 Trompeter Electronics, Inc. Connector assembly
US5707136A (en) 1996-02-26 1998-01-13 Byers; Thomas L. Multiple light systems
US5775802A (en) 1997-03-05 1998-07-07 Kuo; Cheng-Ju Clamp device for wires of ornamental lamp string
US5788361A (en) 1996-10-17 1998-08-04 Lee; Kuo-Hsing Karl Lighting display assembly
US5791940A (en) 1996-10-18 1998-08-11 Chen; Chen-Yuan Bulb socket and socket holder assembly
US5791765A (en) 1997-07-25 1998-08-11 Lin; Mei-Lu Lamp netting device
US5807134A (en) 1996-11-15 1998-09-15 Minami International Corp. Electrical lamp socket assembly
US5816849A (en) 1996-10-25 1998-10-06 Schmidt; Richard Allen Adjustable Christmas light system
US5828183A (en) 1997-11-12 1998-10-27 Wang; Dennis Flashing control circuit for decorative light string
US5829865A (en) 1996-07-03 1998-11-03 Ahroni; Joseph M. Miniature push-in type light unit
US5834901A (en) 1997-05-06 1998-11-10 Shen; Ya-Kuang Flashing light string assembly with a pair of sub-light strings per plug
US5839819A (en) 1997-07-10 1998-11-24 Pan; Wun Fang Light bulb holders for a decorative light string net
US5848838A (en) 1997-05-15 1998-12-15 Presta; Mike Glass mounted light holding strip
US5852348A (en) 1997-05-08 1998-12-22 Lin; Wen-Juei Christmas tree ornamental lighting system
US5854541A (en) 1997-03-19 1998-12-29 Chou; Tsung-Ming Flicker light string suitable for unlimited series-connection
US5860731A (en) 1997-07-23 1999-01-19 Martinez; Lannette Ann Christmas light arrangement
US5893634A (en) 1997-11-21 1999-04-13 Wang; Jessica Decorative light bulb stand with clipping structure
US5915827A (en) 1997-11-12 1999-06-29 Wang; Jessica Decorative light curtain formed by multiple light strings
US5934793A (en) 1997-12-10 1999-08-10 Minami International Corp. Net lights
US5941628A (en) 1997-12-23 1999-08-24 Chang; Chih-Chen Lamp-holder for decorative network type light
US5944408A (en) 1998-01-30 1999-08-31 Tong; George Decorative lighting assembly having reinforced, tied node
US5951146A (en) * 1997-06-11 1999-09-14 Lin; Shwu-Miin Netted lamp device in various matrix arrangements
CN2338598Y (en) 1998-06-15 1999-09-15 吴善国 Curtain like decorative lamp net
CN2340090Y (en) 1998-09-25 1999-09-22 李旭亮 A wall curtain type mesh decorative lamp
US5967644A (en) 1997-11-18 1999-10-19 Pan; Wun Fang Decorative light string set of a curtained type
CA2238113A1 (en) 1998-03-28 1999-11-20 Mei-Lu Lin Lamp netting assembly
CN2365511Y (en) 1999-02-01 2000-02-23 毓豪企业股份有限公司 Ice lantern with improved structure
US6050701A (en) 1996-02-01 2000-04-18 Stone; Juanita Decorative lighting system
US6074244A (en) 1997-07-25 2000-06-13 Crum; Frank Andrew Stringer of decorative lights
US6079848A (en) 1996-07-03 2000-06-27 Ahroni; Joseph M. Lamp unit with improved push-in type bulb holder
US6084357A (en) 1998-04-10 2000-07-04 Janning; John L. Series connected light string with filament shunting
US6086222A (en) 1999-01-08 2000-07-11 Minami International, Inc. Paired cascade effect icicle light sets
US6109951A (en) 1999-04-13 2000-08-29 Huang; Shun-Feng Electrical connecting member for Christmas lamp cords
US6111201A (en) 1997-05-22 2000-08-29 Thomas & Betts International, Inc. Cable splice closure
US6126298A (en) 1998-09-11 2000-10-03 Wu; Jeng-Shyong Support structure for decorative lighting string circuits
US6135616A (en) * 1997-12-10 2000-10-24 Minami International Corporation Method of making a net light
US6152576A (en) 1999-01-25 2000-11-28 Mount; Todd J. Method for supporting a decorative light array
US6155697A (en) 1999-01-25 2000-12-05 Ahroni; Joseph M. Draping decorative light string
CN2415246Y (en) 1999-11-18 2001-01-17 毓豪企业股份有限公司 Ice-bar netted ornament lamps
US6179647B1 (en) 1998-10-29 2001-01-30 J. Kinderman & Sons, Inc. Light set arrangement
US6217193B1 (en) 1999-10-29 2001-04-17 Jen-Chen Won Ornamental lamp strings in network structure
US6224239B1 (en) 1999-04-16 2001-05-01 Kurt S. Adler, Inc. Decorative lamp fixture with icicle shape having interior with plurality of vertically-spaced lights
CN2432431Y (en) 2000-02-28 2001-05-30 翁仁臣 String structure of decorative lamp power cord
CN2432432Y (en) 2000-06-22 2001-05-30 许照明 Christmas lamp string
CN2435623Y (en) 2000-07-20 2001-06-20 张竹成 Curtain lamp
US6273584B1 (en) 1999-12-23 2001-08-14 Jessica Wang Christmas light tree
US6296374B1 (en) 2000-08-09 2001-10-02 Joseph M. Ahroni Draping type decorative light assembly
US6302562B1 (en) 1998-06-03 2001-10-16 Jeng-Shyong Wu Structure for decorative lighting string
US6319056B1 (en) 1997-07-25 2001-11-20 Robert K. Schunk Stringer of decorative lights
CN2460854Y (en) 2000-12-18 2001-11-21 李宏文 Curtain Ring Christmas Light String Structure
EP1172602A1 (en) 2000-07-14 2002-01-16 King Ltd. Neon Icicle light apparatus and associated methods
US6354719B1 (en) 1999-12-16 2002-03-12 Wun Fang Pan Connecting structure of a bulb holder of a decorative light string
US6367951B1 (en) 1997-12-10 2002-04-09 Minami International Corporation Economical net or mesh light set
US6382814B1 (en) 2000-05-15 2002-05-07 Daniel W. Petrocelli Ornamental light display simulating falling snow
CN2490406Y (en) 2001-05-21 2002-05-08 潘文芳 A three-dimensional curtain light
US6394624B1 (en) 2001-03-26 2002-05-28 Yu-Yuan Hsu Decorative artificial icicle
US6398387B1 (en) 2000-12-27 2002-06-04 Robert Wienhold Icicle light candy cane
US6431730B1 (en) 2001-02-08 2002-08-13 Emerald Innovations, L.L.C. Decorative light curtain
US6457842B1 (en) 2001-02-23 2002-10-01 Vito A. Ingrassia Holiday lights line switch
US6474841B1 (en) 2000-09-06 2002-11-05 Sienna, Llc Twinkle light set
US6533437B1 (en) 2002-01-29 2003-03-18 Joseph M. Ahroni Apparatus, systems, and methods for maintaining power to a light string having light units arranged in series
US6536916B1 (en) 2000-08-24 2003-03-25 Sienna Llc Net light set with single active wire
US6544070B1 (en) 2000-08-01 2003-04-08 Tyco Electronics Corporation Enclosure for spliced cable having improved hinge assembly
US6559385B1 (en) 2000-07-14 2003-05-06 3M Innovative Properties Company Stranded cable and method of making
US6576844B1 (en) 1999-09-30 2003-06-10 Yazaki Corporation High-strength light-weight conductor and twisted and compressed conductor
US6575595B1 (en) 2000-05-24 2003-06-10 Jeng-Shyong Wu Electrical circuit distribution structure for decorative lighting string
US6580182B2 (en) 1995-06-26 2003-06-17 Jlj, Inc. Series connected light string with filament shunting
US6612864B2 (en) 2002-01-15 2003-09-02 Fu-Shien Hsu Lighting string with extending lighting structure
US6634766B1 (en) 2002-05-06 2003-10-21 Donovan Gordon Ornamental lighting
US20030198048A1 (en) 2001-03-19 2003-10-23 Frederick W. Richard Decorative light string
US6644836B1 (en) 2002-04-23 2003-11-11 Adams Mfg. Corp. Apparatus for hanging rope lights from a gutter
US6657398B2 (en) 2001-10-17 2003-12-02 Chin Chen Chang Decorative lights network
DE10235081A1 (en) 2002-08-02 2004-02-12 Vera Franjic-Grimsic Artificial Christmas tree has twin-core cable passing through base, trunk and branches supplying current to low-voltage lights which fit into connectors on branches
US20040096596A1 (en) 2002-07-30 2004-05-20 Palmer John M. Christmas tree shaped artificial tree
US6739745B1 (en) 2002-07-19 2004-05-25 Valdes Joann M. Internally illuminated holiday garland
EP1424524A1 (en) 2002-11-28 2004-06-02 Heshan Jian Hao Lighting Ind. Co., Ltd. Decorative light
GB2396686A (en) 2002-12-18 2004-06-30 Packway Ind Ltd Christmas tree having fibre optic illumination
CN1509670A (en) 2002-12-20 2004-07-07 柏汇工业有限公司 Christmas tree with optical fibre lamp decoration
US20040145894A1 (en) 2003-01-28 2004-07-29 Long Danny W. Organizing and display device for decorative lighting
US20040182597A1 (en) 2003-03-20 2004-09-23 Smith Jack B. Carbon-core transmission cable
CN2644876Y (en) 2003-08-21 2004-09-29 刘春明 Multicolor lamp string
US6811283B1 (en) 2003-04-17 2004-11-02 Laszlo Kovacs Decorative illuminated artificial icicle assembly
US20040222012A1 (en) 2003-05-06 2004-11-11 Electron Beam Technologies, Inc. Small-gauge signal cable and its method of use
US6830358B2 (en) 1998-08-28 2004-12-14 Fiber Optic Designs, Inc. Preferred embodiment to led light string
US6840655B2 (en) 2003-06-06 2005-01-11 Ya-Kuang Shen LED light set
US20050122723A1 (en) 2001-03-19 2005-06-09 Frederick W. R. Decorative light strings and repair device
US6913838B2 (en) 2000-07-14 2005-07-05 3M Innovative Properties Company Aluminum matrix composite wire
CN2714949Y (en) 2004-06-29 2005-08-03 郑汉国 Lamp ornament for indoor curtain decoration
US6942355B1 (en) 2003-07-22 2005-09-13 Helen Castiglia Decorative lighting system for Christmas trees and other decorative trees and bushes
US6971768B1 (en) 2003-08-07 2005-12-06 Alvin M Pepito Decorative lighting system
US6980076B1 (en) 2000-05-19 2005-12-27 Mcgraw Edison Company Electrical apparatus with synthetic fiber and binder reinforced cellulose insulation paper
US6982385B2 (en) 2003-12-04 2006-01-03 Jeng-Shyong Wu Wire cable of electrical conductor forming of multiple metals or alloys
CN2751226Y (en) 2004-11-19 2006-01-11 义乌市通宝工艺品有限公司 LED luminous apparatus for Christmas trees
US7015395B2 (en) 2000-02-08 2006-03-21 Gift Technologies, Lp Composite reinforced electrical transmission conductor
US7014352B2 (en) 2003-04-18 2006-03-21 Jeng-Shyong Wu Endurable decoration light string
US7045965B2 (en) 2004-01-30 2006-05-16 1 Energy Solutions, Inc. LED light module and series connected light modules
US20060106444A1 (en) 2004-02-11 2006-05-18 Michael Mark S Drawn strand filled tubing wire
US7063442B2 (en) 2004-06-23 2006-06-20 Inliten, Llc Decorative light string
US7137719B2 (en) 2004-05-12 2006-11-21 Jeng-Shyong Wu Composite serial lamp set
US7145082B2 (en) 2001-11-16 2006-12-05 Nexons Flexible electrical line
CN2883887Y (en) 2006-02-11 2007-03-28 吴瑾 Ice strip lamp
US7235815B2 (en) 2005-02-14 2007-06-26 Hsien-Ta Shen LED light set
US7249866B1 (en) 2006-05-19 2007-07-31 Daniel Tai Organizing and installation device for icicle lights
US20080025024A1 (en) 2006-07-31 2008-01-31 Jingjing Yu Parallel-series led light string
US20080049424A1 (en) 2006-08-22 2008-02-28 Yi-Jou Wang Decorative light string with C-type lamps
US7351092B2 (en) 2006-07-05 2008-04-01 Wei-Jen Tseng Connection assembly for a light string having a primary wire and secondary wires electrically connected to the primary wire and each secondary wire having light bulbs thereon
CN201129633Y (en) 2007-12-18 2008-10-08 周飞 Curtain lighting with one-way opening and closing
CN201155672Y (en) 2007-11-30 2008-11-26 浙江天宇灯饰有限公司 Intelligent digital decorating lamp device
US20080303446A1 (en) 2007-06-11 2008-12-11 Hui Dong Xie Qun Lighting Manufacturing Lamp system
US20090002991A1 (en) 2007-06-28 2009-01-01 Kuo-Hao Huang Decorative light string
US7481555B2 (en) 2006-12-26 2009-01-27 Excellence Opto, Inc. LED melody decoration kit with multicolor light sources
CN201187701Y (en) 2008-04-02 2009-01-28 鹤山丽得电子实业有限公司 Belt lamp base structure
CN201204717Y (en) 2008-05-08 2009-03-04 郑宏晖 Decorative lamp string structure of tungsten filament bulb combined with LED lamp
US7547843B2 (en) 2006-12-28 2009-06-16 3M Innovative Properties Company Overhead electrical power transmission line
CN201288964Y (en) 2008-11-06 2009-08-12 浙江天宇灯饰有限公司 Flared LED lamp string
US20090256485A1 (en) 2008-04-14 2009-10-15 Jetmax Industrial Ltd. Decorative light string
US20090260852A1 (en) 2008-02-29 2009-10-22 Fort Wayne Metals Research Products Corporation Alternating core composite wire
US20090308637A1 (en) 2007-02-16 2009-12-17 Nv Bekaert Sa Steel core for an electric transmission cable and method of fabricating it
US20090322236A1 (en) 2008-06-27 2009-12-31 Chu-Cheng Chang Christmas light string with LED bulb loop and incandescent light bulb loop
US20100089614A1 (en) 2006-10-11 2010-04-15 Francis Debladis electric control cable and an associated fabrication method
US7750576B2 (en) 2006-03-01 2010-07-06 Kuo-An Pan Light string with external resistor unit
US20100195332A1 (en) 2007-07-25 2010-08-05 Leslie Wasem Decorative Lighting Strand and Method of Assembling and Installing Same
US7772495B2 (en) 2008-01-15 2010-08-10 Jeng-Shyong Wu Wire cable with saving energy
US7893627B2 (en) 2007-06-18 2011-02-22 Xu-Liang Li Light strands
US20110062875A1 (en) 2006-12-22 2011-03-17 Seasonal Specialties, Llc Resistive bypass for series lighting circuit
US20110076425A1 (en) 2008-07-07 2011-03-31 Polygroup Macau Limited (Bvi) Pull Up Tree System
US20110100677A1 (en) 2008-07-01 2011-05-05 Dow Global Technologies Inc. Fiber-polymer composite
US8007129B2 (en) 2009-05-22 2011-08-30 Chen-Sheng Yang LED-based christmas light string assembly with parallel-wired lighting units
EP2436808A1 (en) 2010-09-30 2012-04-04 NV Bekaert SA Multi-filament with annealed copper core and drawn steel layer
US20120086349A1 (en) 2010-10-06 2012-04-12 Segan Llc Decorative Light System
US20130033869A1 (en) 2011-08-03 2013-02-07 Denise Millington Interchangeable Decorative Lights
US20130062095A1 (en) 2011-09-12 2013-03-14 Hitachi Cable Fine-Tech, Ltd. Flat cable, cable harness using the same and method of making the flat cable
US8454186B2 (en) 2010-09-23 2013-06-04 Willis Electric Co., Ltd. Modular lighted tree with trunk electical connectors
US8469750B2 (en) 2011-09-22 2013-06-25 Willis Electric Co., Ltd. LED lamp assembly and light strings including a lamp assembly
US8569960B2 (en) 2011-11-14 2013-10-29 Willis Electric Co., Ltd Conformal power adapter for lighted artificial tree
US8592845B2 (en) 2010-03-05 2013-11-26 Willis Electric Co., Ltd. Wire-piercing light-emitting diode lamps
CN103680693A (en) 2013-11-22 2014-03-26 东莞固邦灯饰电线有限公司 Tensile cable and method for manufacturing same
US8692120B2 (en) 2007-07-20 2014-04-08 Nexans Electrical control cable
CN203910314U (en) 2014-06-16 2014-10-29 高荣庆 Novel wire
CN203963649U (en) 2014-06-19 2014-11-26 郭正儒 Holiday String Lights with Composite Power Cord
CN204026296U (en) 2014-06-17 2014-12-17 郑靛青 A light string unit
US20150211696A1 (en) 2014-01-29 2015-07-30 Hung-Huei Cheng Multi-lamp decorating curtain light
US9140438B2 (en) 2013-09-13 2015-09-22 Willis Electric Co., Ltd. Decorative lighting with reinforced wiring
US9157588B2 (en) 2013-09-13 2015-10-13 Willis Electric Co., Ltd Decorative lighting with reinforced wiring
CN204708570U (en) 2015-06-25 2015-10-21 王建武 A kind of decorative curtain
CN205026480U (en) 2015-10-13 2016-02-10 江门博凯灯饰有限公司 Tensile decorative chain
US20160189827A1 (en) 2014-12-26 2016-06-30 Rongqing Gao Reinforcing-type electric wire
US20170030534A1 (en) 2015-07-29 2017-02-02 Kuo-Wei Pan Wire Structure For Decorative Light String
US20170103829A1 (en) 2015-10-13 2017-04-13 Qin Yu Light string with reinforced wires
US9845925B2 (en) 2015-10-26 2017-12-19 Willis Electric Co., Ltd. Tangle-resistant decorative lighting assembly
US10184654B1 (en) 2017-03-27 2019-01-22 Willis Electric Co., Ltd. Lighted decorative sculpture

Family Cites Families (135)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1647A (en) 1840-06-20 Improvement in the mode of communicating information by signals by the
US398769A (en) 1889-02-26 Elegtric-eircuit coupler
US47940A (en) 1865-05-30 Improvement in line-wires for telegraphs
US1677972A (en) 1927-08-03 1928-07-24 Emanuel S Marks Electrically-illuminated artificial tree
US1895656A (en) 1932-02-03 1933-01-31 Gadke William Clip for attaching electric lights to christmas trees
US2050364A (en) 1934-12-18 1936-08-11 Westinghouse Electric & Mfg Co Series lamp socket
US2275533A (en) 1940-03-28 1942-03-10 William R Landy Christmas tree illuminating system
US2484813A (en) 1945-06-06 1949-10-18 John O Bower Spun suture
US2969456A (en) 1954-12-22 1961-01-24 Florence C Raymaley Christmas tree lighting device
US2806938A (en) 1955-06-15 1957-09-17 Grady R Henry Illuminated rotating tree
US3118617A (en) 1960-03-18 1964-01-21 Hellrich Tobias Electrically illuminated artificial christmas tree
US3115435A (en) 1960-12-28 1963-12-24 Raylite Electric Corp Decorative simulated christmas tree constructions
US3214318A (en) 1961-02-27 1965-10-26 Snow Marvin Artificial christmas tree
US3214579A (en) 1963-03-04 1965-10-26 Mario C Pacini Christmas tree lighting systems
US3296430A (en) 1964-10-01 1967-01-03 Eckert William Tree lighting system
US3616107A (en) 1969-03-20 1971-10-26 Hpe Inc Sectionalized artificial tree structure with integral branch and collar combinations
US3571586A (en) 1969-04-29 1971-03-23 Hugh L Duckworth An artificial christmas tree with integral lighting means
US3617732A (en) 1969-11-19 1971-11-02 Royal P Fisher Artificial tree with an electrical illuminating system
US3806399A (en) 1970-07-30 1974-04-23 D Cocjin Mechanical christmas tree manifested by its rotating motion and the undulation of its branches
US3985924A (en) 1975-03-17 1976-10-12 The Raymond Lee Organization, Inc. Artificial Christmas tree
US4020201A (en) 1976-02-11 1977-04-26 Jeanne Marylyn Miller Artificial tree
US4072857A (en) 1976-05-10 1978-02-07 Devicaris Guy A Artificial tree
US4140823A (en) 1977-04-01 1979-02-20 Industrial Park Machine & Tool Co., Inc. Foldable Christmas tree and branch holder therefor
DE2735476C2 (en) 1977-08-04 1985-10-31 Siemens AG, 1000 Berlin und 8000 München Process and device for the production of cables and wires with SZ-stranded stranding elements
DE3169897D1 (en) 1980-12-19 1985-05-15 Kupferdraht Isolierwerk Ag Overhead cable with tension members
US4805075A (en) 1983-04-27 1989-02-14 Dolores Damore Artificial Christmas tree
US5121310A (en) 1984-10-24 1992-06-09 Ahroni Joseph M Chaser decorative light set
US5109324A (en) 1984-10-24 1992-04-28 Ahroni Joseph M Light unit for decorative miniature light sets
US4899266A (en) 1984-10-24 1990-02-06 Ahroni Joseph M Miniature light sets and lampholders and method for making them
EP0287517B1 (en) 1987-04-13 1992-01-15 Schweizerische Isola-Werke Communication or control cable with a supporting element
US4859205A (en) 1988-05-13 1989-08-22 Amp Incorporated Strain relief for flat cable termination
US4855880A (en) 1987-11-10 1989-08-08 Mancusi Jr Joseph J Electrically enhanced artificial tree
FR2634312B1 (en) 1988-07-18 1994-03-18 Cousin Ets Cousin Freres A M ELECTROPORTER CABLE
JP2535651B2 (en) 1990-07-24 1996-09-18 株式会社東芝 Semiconductor device
US5033976A (en) 1990-08-03 1991-07-23 Baxter International Inc. Hinged electrical connector
US5120234A (en) 1991-02-20 1992-06-09 Omega Special Products, Inc. Electrical connector
US5104608A (en) 1991-08-12 1992-04-14 Pickering Harold J Programmable Christmas tree
US5342661A (en) 1992-07-20 1994-08-30 Wilcox Ii Donald R Folding artificial Christmas tree
CN2212704Y (en) 1993-06-29 1995-11-15 吴政雄 lamp holder
US5586905A (en) 1993-11-01 1996-12-24 Molex Incorporated Insulation displacement electrical connector with improved strain relief
US5455750A (en) 1993-11-15 1995-10-03 Davis; Lewis W. Artificial Christmas tree with scent, sound and visual elements incorporated therein
US5580159A (en) 1995-04-12 1996-12-03 Noma, Inc. Miniature light fixture
US5550720A (en) 1995-06-26 1996-08-27 Carroll; Grant A. Artificial christmas tree with electric separable segments
US5652032A (en) 1996-02-15 1997-07-29 Kaczor; Sheila Artificial Christmas tree
JP2866343B2 (en) 1996-03-28 1999-03-08 金井 宏彰 Imitation tree
US5855705A (en) 1996-03-29 1999-01-05 Gauthier; Ray Artificial Christmas tree
US5816862A (en) 1996-06-19 1998-10-06 Tseng; Jeou-Nan Light bulb socket holder
US5709457B1 (en) 1996-07-26 2000-06-20 Minami Internat Corp Draining lamp base/husk assembly
US5932793A (en) * 1996-08-01 1999-08-03 Gas Research Institute Apparatus and method for determining thermophysical properties using an isochoric approach
US5720544A (en) 1996-09-16 1998-02-24 Shu; Kuo Fen Waterproof light bulb holder
US5722766A (en) 1996-09-16 1998-03-03 Shu; Kuo Fen Secure light bulb holder assembly
US6210016B1 (en) 1997-01-27 2001-04-03 Frank J Prineppi Christmas tree lighting
US5776559A (en) 1997-04-11 1998-07-07 Woolford; Esther Electric Christmas tree
US5820248A (en) 1997-08-04 1998-10-13 Ferguson; Raymond K. Fiber optic Christmas tree
US6113430A (en) 1997-08-26 2000-09-05 Wu; Jeng-Shyong Lamp socket structure
US6030670A (en) 1997-09-03 2000-02-29 Chang; Chih-Chen Decorating tree with embellishing lamp
US5921806A (en) 1997-10-30 1999-07-13 The Whitaker Corporation Multi-exit strain relief for an electrical connector
US5908238A (en) 1998-01-08 1999-06-01 Huang; Shun-Feng Christmas lamp decoration with eared bulblet and waterproof cap
US6116563A (en) 1998-08-03 2000-09-12 Tsai; Yuan-Hui Christmas tree with improved branch joint
US6056427A (en) 1998-08-28 2000-05-02 Boto (Licenses) Limited Artificial tree with optical fibre illumination and assembly method thereof
US6053774A (en) 1998-10-28 2000-04-25 Lin; Fong Shi Miniature light bulb socket structure having an insert to keep wire terminals separate
US6203169B1 (en) 1999-06-25 2001-03-20 Osram Sylvania Inc. Lamp and method of producing same
US6283797B1 (en) 1999-07-30 2001-09-04 Jeng-Shyong Wu Structure of a lamp base
US6162515A (en) 1999-08-23 2000-12-19 Hill; Eric Illuminated tree structure
US6257793B1 (en) 1999-09-02 2001-07-10 Fong Shi Lin Joint socket structure used in artificial Christmas trees
US6123433A (en) 2000-01-04 2000-09-26 Chen; Ching-Chao Christmas tree light
US6458435B1 (en) 2000-02-03 2002-10-01 Ft Far East Limited Artificial tree
US6257740B1 (en) 2000-02-11 2001-07-10 James W Gibboney, Jr. Lamp for use in light strings
PT1422975E (en) 2000-04-24 2010-07-09 Philips Solid State Lighting Light-emitting diode based product
US6347965B1 (en) 2000-11-28 2002-02-19 Wun Fang Pan Electrical connection mechanism used in a miniature light bulb string
US20020097573A1 (en) 2001-01-23 2002-07-25 Shen Wei Hong Wiring arrangement for christmas lamp string
US6457839B1 (en) 2001-02-02 2002-10-01 Jean J. Grandoit Artificial electric christmas tree
US6514581B1 (en) 2001-02-09 2003-02-04 Cheryl A. Gregory Pop-up artificial christmas tree
US6361368B1 (en) 2001-02-16 2002-03-26 Tseng Jeou-Nan Christmas bulb socket
US6541800B2 (en) 2001-02-22 2003-04-01 Weldon Technologies, Inc. High power LED
US20020149936A1 (en) 2001-04-13 2002-10-17 Mueller Alfred M. Decorative lighting assembly
US6588914B1 (en) 2002-01-16 2003-07-08 Tai-Ning Tang Artificial tree with decorative lamps
TW518775B (en) 2002-01-29 2003-01-21 Chi-Hsing Hsu Immersion cooling type light emitting diode and its packaging method
US6595657B1 (en) 2002-03-05 2003-07-22 Whiter Shieh Lamp holder and socket structure for miniature decorative light
US6752512B2 (en) 2002-07-16 2004-06-22 Wun Fang Pan Decorative lamp-tree
EP1555479A4 (en) 2002-10-21 2008-09-24 K Ltd Ag Power supply wire, wire grip, electric appliance suspending device, and electric appliance suspending method
USD486385S1 (en) 2002-11-04 2004-02-10 Inguald Alain Smith-Kielland Hinged split wire clamp
GB0225808D0 (en) 2002-11-06 2002-12-11 Primeau Sylvain Artificial tree having an electrical illuminating system
US6794825B1 (en) 2002-11-14 2004-09-21 Boto (Licenses) Limited Decorative tree with electronic light controller
US6805463B2 (en) 2002-12-03 2004-10-19 Whiter Shieh Shunt element contacting structure for decorative lamp holder
US6908215B2 (en) 2003-01-03 2005-06-21 Jeng-Shyong Wu Dynamically sensitized decorative lighting equipment
US6883951B2 (en) 2003-01-29 2005-04-26 Jeng-Shyong Wu Combinative decorative light equipment
CN2611741Y (en) 2003-03-11 2004-04-14 伟力电器股份有限公司 Telescopic tree lights
CN2611742Y (en) 2003-03-11 2004-04-14 伟力电器股份有限公司 Combined tree lights
CN2611740Y (en) 2003-03-11 2004-04-14 吴政雄 decorative tree lights
US6929383B1 (en) 2003-07-01 2005-08-16 John L. Janning Semiconductor chip and conductive member for use in a light socket
US20050048226A1 (en) 2003-09-03 2005-03-03 Gary Lonnie F. Automatically erectable decorative tree
US7102172B2 (en) 2003-10-09 2006-09-05 Permlight Products, Inc. LED luminaire
US20050254242A1 (en) 2004-03-24 2005-11-17 Baker Claude W Action light system -- decorative lighting
US20050286267A1 (en) 2004-06-29 2005-12-29 Wang Jung K Auto-contact bulb assembly
US20050249892A1 (en) 2004-08-04 2005-11-10 Rocheleau Peter O Self-shaping artificial tree
US7132139B2 (en) 2004-09-28 2006-11-07 Chao Tai Electron Co., Ltd. Structure of an assembled type christmas tree
US7850361B2 (en) 2004-11-10 2010-12-14 1 Energy Solutions, Inc. Removable LED lamp holder
US20060164831A1 (en) 2005-01-27 2006-07-27 Win-Ching Lai Pigtail light string
WO2006130751A1 (en) 2005-06-02 2006-12-07 Gp Ltd Light string system
GB0517316D0 (en) 2005-08-24 2005-10-05 Graham Morton A lamp
US20070076404A1 (en) 2005-10-04 2007-04-05 Yuan-Hui Tsai Dummy wire structure of light string
US20070092664A1 (en) 2005-10-25 2007-04-26 Chun Chang L Rotatable and shape-changeable christmas tree
TWI287442B (en) 2006-01-02 2007-10-01 Jiahn-Chang Wu Article insertion decoration tree
CN2872072Y (en) 2006-01-06 2007-02-21 林书弘 LED Light String Device with Fool-proof Mechanism
US7585552B2 (en) 2006-03-17 2009-09-08 Melinda Joanne Meseke Apparatus and method of assembling an artificial tree and table surface decoration assembly
US20070230174A1 (en) 2006-04-03 2007-10-04 Hicks Larry O Illuminated artificial tree
US20070253191A1 (en) 2006-04-28 2007-11-01 Chin Sye F Revolving christmas tree with articulating branches
US7695298B2 (en) 2006-04-28 2010-04-13 Xerox Corporation Hinged module coupling with integrated cable connection
US20080007951A1 (en) 2006-07-06 2008-01-10 Tsung-Wen Chan LED decorative lighting structure
JP5055879B2 (en) 2006-08-02 2012-10-24 ソニー株式会社 Display device and driving method of display device
US7445824B2 (en) 2006-11-03 2008-11-04 Cindex Holdings Limited Convertible/inverted tree
US7253556B1 (en) 2006-12-08 2007-08-07 Tech Patent Licensing, Llc Light string socket with mechanical shunt
US20080186740A1 (en) 2007-02-07 2008-08-07 Mike Huang Connecting assembly in light strings to maintain electrical connection
US7837494B2 (en) 2007-02-26 2010-11-23 Continental Automotive Systems Us, Inc. Connection of wire to a lead frame
CN201069067Y (en) 2007-07-26 2008-06-04 鹤山丽得电子实业有限公司 LED lamp string
US8053042B1 (en) 2009-07-14 2011-11-08 Jason Loomis Artificial tree apparatus
US7641355B2 (en) 2007-09-04 2010-01-05 Kam Cham Lau Decorative light devices
US20100053991A1 (en) 2007-09-21 2010-03-04 Boggs Marsha K Illuminated artificial christmas tree
US7914168B2 (en) 2008-05-21 2011-03-29 BoPal LLC Pop-up christmas tree
US20100000065A1 (en) 2008-07-07 2010-01-07 Cindex Holdings Limited (A Hong Kong Corporation) Pull up tree system
US20100072747A1 (en) 2008-09-22 2010-03-25 Dennis Krize Tree pole coupler system
US8062718B2 (en) 2008-12-10 2011-11-22 Schooley Bruce A Invertible christmas tree
USD620836S1 (en) 2009-10-05 2010-08-03 Willis Electric Co., Ltd. Prancing reindeer
US8916242B2 (en) 2009-12-31 2014-12-23 Polygroup Macau Limited (Bvi) Connector system
US8100546B2 (en) 2010-03-01 2012-01-24 Frank Lutz Rotating fiber optic sculpture
USD678211S1 (en) 2011-04-01 2013-03-19 Willis Electric Co., Ltd. Electrical connector
USD696153S1 (en) 2011-05-18 2013-12-24 Willis Electric Co., Ltd. Artificial tree trunk
USD686523S1 (en) 2011-05-18 2013-07-23 Willis Electric Co., Ltd. Artificial tree trunk
US8298633B1 (en) 2011-05-20 2012-10-30 Willis Electric Co., Ltd. Multi-positional, locking artificial tree trunk
US8876321B2 (en) 2011-12-09 2014-11-04 Willis Electric Co., Ltd. Modular lighted artificial tree
US20130163250A1 (en) 2011-12-23 2013-06-27 Johnny Chen Decorative lamp assembly and light strings including a lamp assembly
US20130214691A1 (en) 2011-12-30 2013-08-22 Willis Electric Co., Ltd. Encapsulated light-emitting diode lamp
CN202855357U (en) 2012-08-28 2013-04-03 陆思烨 Bend resistant wire
WO2014124343A1 (en) 2013-02-07 2014-08-14 Tail Lights, Inc. Safety illumination device for a horse

Patent Citations (223)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1656148A (en) 1926-04-05 1928-01-10 Harris Mark Artificial christmas tree
US2072337A (en) 1936-05-05 1937-03-02 Nofade Electric Corp Safety lighting circuit
US3289145A (en) 1964-04-09 1966-11-29 Elco Corp Appliance connector
US3302013A (en) 1965-01-04 1967-01-31 Maxwell T Richardson Simulated icicle decorations
US3373397A (en) 1965-10-06 1968-03-12 Amp Inc Electrical connector and insulation housing therefor
GB1150390A (en) 1967-02-22 1969-04-30 Amp Inc Apparatus for Crimping Electrical Connectors to Wires
US3504169A (en) 1967-10-17 1970-03-31 Barron H Freeburger Electric light string kit
GB1245214A (en) 1969-04-29 1971-09-08 Amp Inc Improved tab receptacle electrical connector
US3723723A (en) 1971-01-04 1973-03-27 Small World Importing Corp Christmas tree electric light decoration set
US3831132A (en) 1971-04-29 1974-08-20 Molex Inc Crimp terminal for aluminum wire
US3704366A (en) 1971-09-03 1972-11-28 Lawrence J Korb Outdoor lighted artificial christmas tree
US3783437A (en) 1971-10-07 1974-01-01 Gen Electric Lamp and socket for decorative string set
US3970834A (en) 1974-12-16 1976-07-20 Marion Joseph Smith Artificial tree
US4097917A (en) 1976-06-07 1978-06-27 Mccaslin Robert E Rotatable light display
US4203476A (en) 1979-01-05 1980-05-20 Dayco Corporation Wire reinforced hose
US4262480A (en) 1979-03-01 1981-04-21 Frederick A. Lowenstein Novelty yarn and method and apparatus of making same
GB2137086A (en) 1983-02-25 1984-10-03 Fortunelite Ind Company Limite Christmas tree with integral lamps
US4493523A (en) 1983-10-18 1985-01-15 Challenger Circle F, Inc. Adaptive strain relief for wiring devices
US4516193A (en) 1984-04-16 1985-05-07 Murphy James P Lighting system for artificial Christmas tree
US4779177A (en) 1984-10-24 1988-10-18 Ahroni Joseph M Series-parallel connected miniature light set
US4631650A (en) 1984-10-24 1986-12-23 Ahroni Joseph M Series-parallel connected miniature light set
US4807098A (en) 1984-10-24 1989-02-21 Ahroni Joseph M Lampholders for miniature light sets
DE8436328U1 (en) 1984-12-12 1985-04-04 Otto, Manfred, 8754 Großostheim PLASTIC FIR TREE WITH CONNECTABLE BRANCHES
GB2172135A (en) 1985-03-08 1986-09-10 Royston Francis Allen Lighting system combined with an artificial tree
US4753600A (en) 1987-05-08 1988-06-28 Williams O V Rotatable electrical connector
EP0298518A2 (en) 1987-07-10 1989-01-11 Fujikura Ltd. Method for manufacturing a copper-clad steel trolley wire
US4777573A (en) 1988-06-24 1988-10-11 Liao Nan Whair Miniature light set
US4870547A (en) 1988-10-21 1989-09-26 Crucefix Michael D Christmas tree lights
US5159157A (en) 1989-09-12 1992-10-27 Kabelwerke Reinshagen Gmbh Electrical cable with element of high tensile strength
WO1991010093A1 (en) 1990-01-05 1991-07-11 Ahroni Joseph M Improved chaser decorative light set and miniature light units
US5216205A (en) 1990-09-28 1993-06-01 Sumitomo Electric Industries, Ltd. Wire conductor for harness
US5150964A (en) 1991-06-21 1992-09-29 Tsui Pui Hing Joy light structure
US5372525A (en) 1992-06-09 1994-12-13 Wu; Jeng-Shyong Connector for fastener for Christmas light strings
US5281158A (en) 1993-01-11 1994-01-25 Lin Wen Hsiung Light socket and socket adapter
US5456620A (en) 1993-07-13 1995-10-10 Chrysler Corporation Connector assembly for lamps
US5453664A (en) 1994-02-01 1995-09-26 Harris; Geoffrey H. Light string with improved shunt system
US5481444A (en) 1994-02-16 1996-01-02 Schultz; Thomas J. Miniature light holder
US5451842A (en) 1994-03-15 1995-09-19 Chien; Tseng-Lu Electro-luminescent seasonal light apparatus
US5442258A (en) 1994-05-04 1995-08-15 Hakuyo Denkyu Kabushiki Kaisha LED lamp device
US5560975A (en) 1994-06-28 1996-10-01 Casper Enterprises, Inc. Decorating system
US5601361A (en) 1994-10-17 1997-02-11 Lawrence; Lonnie Celebration electric light net
WO1996024966A1 (en) 1995-02-10 1996-08-15 The Whitaker Corporation Sensor connector
CN1181693A (en) 1995-02-28 1998-05-13 詹纳达斯·塔克达斯·拉拉 an artificial tree
WO1996026661A1 (en) 1995-02-28 1996-09-06 Lal, Thakurdas, Nandiram An artificial tree
US6580182B2 (en) 1995-06-26 2003-06-17 Jlj, Inc. Series connected light string with filament shunting
US5667295A (en) * 1995-09-26 1997-09-16 Neon King Limited Modular honeycomb light and lightbulb module structure
US5632550A (en) * 1995-10-03 1997-05-27 Yeh; Ren S. Decorative array lighting system
US6050701A (en) 1996-02-01 2000-04-18 Stone; Juanita Decorative lighting system
US5707136A (en) 1996-02-26 1998-01-13 Byers; Thomas L. Multiple light systems
US6079848A (en) 1996-07-03 2000-06-27 Ahroni; Joseph M. Lamp unit with improved push-in type bulb holder
US5829865A (en) 1996-07-03 1998-11-03 Ahroni; Joseph M. Miniature push-in type light unit
CN2254143Y (en) 1996-09-23 1997-05-14 刘世全 Curtain type decoration lamp
US5702262A (en) 1996-10-04 1997-12-30 Trompeter Electronics, Inc. Connector assembly
US5788361A (en) 1996-10-17 1998-08-04 Lee; Kuo-Hsing Karl Lighting display assembly
US5791940A (en) 1996-10-18 1998-08-11 Chen; Chen-Yuan Bulb socket and socket holder assembly
US5816849A (en) 1996-10-25 1998-10-06 Schmidt; Richard Allen Adjustable Christmas light system
US5807134A (en) 1996-11-15 1998-09-15 Minami International Corp. Electrical lamp socket assembly
US5775802A (en) 1997-03-05 1998-07-07 Kuo; Cheng-Ju Clamp device for wires of ornamental lamp string
US5854541A (en) 1997-03-19 1998-12-29 Chou; Tsung-Ming Flicker light string suitable for unlimited series-connection
US5834901A (en) 1997-05-06 1998-11-10 Shen; Ya-Kuang Flashing light string assembly with a pair of sub-light strings per plug
US5852348A (en) 1997-05-08 1998-12-22 Lin; Wen-Juei Christmas tree ornamental lighting system
US5848838A (en) 1997-05-15 1998-12-15 Presta; Mike Glass mounted light holding strip
US6111201A (en) 1997-05-22 2000-08-29 Thomas & Betts International, Inc. Cable splice closure
US5951146A (en) * 1997-06-11 1999-09-14 Lin; Shwu-Miin Netted lamp device in various matrix arrangements
US5839819A (en) 1997-07-10 1998-11-24 Pan; Wun Fang Light bulb holders for a decorative light string net
US5860731A (en) 1997-07-23 1999-01-19 Martinez; Lannette Ann Christmas light arrangement
US6319056B1 (en) 1997-07-25 2001-11-20 Robert K. Schunk Stringer of decorative lights
US5791765A (en) 1997-07-25 1998-08-11 Lin; Mei-Lu Lamp netting device
US6074244A (en) 1997-07-25 2000-06-13 Crum; Frank Andrew Stringer of decorative lights
US5915827A (en) 1997-11-12 1999-06-29 Wang; Jessica Decorative light curtain formed by multiple light strings
US5828183A (en) 1997-11-12 1998-10-27 Wang; Dennis Flashing control circuit for decorative light string
US5967644A (en) 1997-11-18 1999-10-19 Pan; Wun Fang Decorative light string set of a curtained type
US5893634A (en) 1997-11-21 1999-04-13 Wang; Jessica Decorative light bulb stand with clipping structure
US5934793A (en) 1997-12-10 1999-08-10 Minami International Corp. Net lights
US6367951B1 (en) 1997-12-10 2002-04-09 Minami International Corporation Economical net or mesh light set
US6135616A (en) * 1997-12-10 2000-10-24 Minami International Corporation Method of making a net light
US5941628A (en) 1997-12-23 1999-08-24 Chang; Chih-Chen Lamp-holder for decorative network type light
US5944408A (en) 1998-01-30 1999-08-31 Tong; George Decorative lighting assembly having reinforced, tied node
CA2238113A1 (en) 1998-03-28 1999-11-20 Mei-Lu Lin Lamp netting assembly
US6084357A (en) 1998-04-10 2000-07-04 Janning; John L. Series connected light string with filament shunting
US6302562B1 (en) 1998-06-03 2001-10-16 Jeng-Shyong Wu Structure for decorative lighting string
CN2338598Y (en) 1998-06-15 1999-09-15 吴善国 Curtain like decorative lamp net
US6830358B2 (en) 1998-08-28 2004-12-14 Fiber Optic Designs, Inc. Preferred embodiment to led light string
US6126298A (en) 1998-09-11 2000-10-03 Wu; Jeng-Shyong Support structure for decorative lighting string circuits
CN2340090Y (en) 1998-09-25 1999-09-22 李旭亮 A wall curtain type mesh decorative lamp
US6179647B1 (en) 1998-10-29 2001-01-30 J. Kinderman & Sons, Inc. Light set arrangement
US6086222A (en) 1999-01-08 2000-07-11 Minami International, Inc. Paired cascade effect icicle light sets
US6152576A (en) 1999-01-25 2000-11-28 Mount; Todd J. Method for supporting a decorative light array
US6155697A (en) 1999-01-25 2000-12-05 Ahroni; Joseph M. Draping decorative light string
CN2365511Y (en) 1999-02-01 2000-02-23 毓豪企业股份有限公司 Ice lantern with improved structure
US6109951A (en) 1999-04-13 2000-08-29 Huang; Shun-Feng Electrical connecting member for Christmas lamp cords
US6224239B1 (en) 1999-04-16 2001-05-01 Kurt S. Adler, Inc. Decorative lamp fixture with icicle shape having interior with plurality of vertically-spaced lights
US6576844B1 (en) 1999-09-30 2003-06-10 Yazaki Corporation High-strength light-weight conductor and twisted and compressed conductor
US6217193B1 (en) 1999-10-29 2001-04-17 Jen-Chen Won Ornamental lamp strings in network structure
CN2415246Y (en) 1999-11-18 2001-01-17 毓豪企业股份有限公司 Ice-bar netted ornament lamps
US6309087B1 (en) 1999-11-18 2001-10-30 Shining Blick Enterprises Co., Ltd. Net light set with ice stick section
US6354719B1 (en) 1999-12-16 2002-03-12 Wun Fang Pan Connecting structure of a bulb holder of a decorative light string
US6273584B1 (en) 1999-12-23 2001-08-14 Jessica Wang Christmas light tree
US8371028B2 (en) 2000-02-08 2013-02-12 Gift Technologies, Llc Method for increasing the current carried between two high voltage conductor support towers
US7015395B2 (en) 2000-02-08 2006-03-21 Gift Technologies, Lp Composite reinforced electrical transmission conductor
CN2432431Y (en) 2000-02-28 2001-05-30 翁仁臣 String structure of decorative lamp power cord
US6382814B1 (en) 2000-05-15 2002-05-07 Daniel W. Petrocelli Ornamental light display simulating falling snow
US6980076B1 (en) 2000-05-19 2005-12-27 Mcgraw Edison Company Electrical apparatus with synthetic fiber and binder reinforced cellulose insulation paper
US6575595B1 (en) 2000-05-24 2003-06-10 Jeng-Shyong Wu Electrical circuit distribution structure for decorative lighting string
CN2432432Y (en) 2000-06-22 2001-05-30 许照明 Christmas lamp string
EP1172602A1 (en) 2000-07-14 2002-01-16 King Ltd. Neon Icicle light apparatus and associated methods
US6913838B2 (en) 2000-07-14 2005-07-05 3M Innovative Properties Company Aluminum matrix composite wire
US6559385B1 (en) 2000-07-14 2003-05-06 3M Innovative Properties Company Stranded cable and method of making
CN2435623Y (en) 2000-07-20 2001-06-20 张竹成 Curtain lamp
US6544070B1 (en) 2000-08-01 2003-04-08 Tyco Electronics Corporation Enclosure for spliced cable having improved hinge assembly
US6296374B1 (en) 2000-08-09 2001-10-02 Joseph M. Ahroni Draping type decorative light assembly
US6536916B1 (en) 2000-08-24 2003-03-25 Sienna Llc Net light set with single active wire
US6474841B1 (en) 2000-09-06 2002-11-05 Sienna, Llc Twinkle light set
CN2460854Y (en) 2000-12-18 2001-11-21 李宏文 Curtain Ring Christmas Light String Structure
US6398387B1 (en) 2000-12-27 2002-06-04 Robert Wienhold Icicle light candy cane
US6431730B1 (en) 2001-02-08 2002-08-13 Emerald Innovations, L.L.C. Decorative light curtain
US6457842B1 (en) 2001-02-23 2002-10-01 Vito A. Ingrassia Holiday lights line switch
US20050122723A1 (en) 2001-03-19 2005-06-09 Frederick W. R. Decorative light strings and repair device
US20030198048A1 (en) 2001-03-19 2003-10-23 Frederick W. Richard Decorative light string
US7029145B2 (en) 2001-03-19 2006-04-18 Integrated Power Components, Inc. Low voltage decorative light string including power supply
US6394624B1 (en) 2001-03-26 2002-05-28 Yu-Yuan Hsu Decorative artificial icicle
CN2490406Y (en) 2001-05-21 2002-05-08 潘文芳 A three-dimensional curtain light
US6657398B2 (en) 2001-10-17 2003-12-02 Chin Chen Chang Decorative lights network
US7145082B2 (en) 2001-11-16 2006-12-05 Nexons Flexible electrical line
US6612864B2 (en) 2002-01-15 2003-09-02 Fu-Shien Hsu Lighting string with extending lighting structure
US6609814B2 (en) 2002-01-29 2003-08-26 Joseph M. Ahroni Apparatus, systems, and methods for maintaining power to a light string having light units arranged in series
US20030142494A1 (en) 2002-01-29 2003-07-31 Ahroni Joseph M. Apparatus, systems, and methods for maintaining power to a light string having light units arranged in series
US6533437B1 (en) 2002-01-29 2003-03-18 Joseph M. Ahroni Apparatus, systems, and methods for maintaining power to a light string having light units arranged in series
US6644836B1 (en) 2002-04-23 2003-11-11 Adams Mfg. Corp. Apparatus for hanging rope lights from a gutter
US20030206412A1 (en) 2002-05-06 2003-11-06 Donovan Gordon Ornamental lighting
US6634766B1 (en) 2002-05-06 2003-10-21 Donovan Gordon Ornamental lighting
US6739745B1 (en) 2002-07-19 2004-05-25 Valdes Joann M. Internally illuminated holiday garland
US20040096596A1 (en) 2002-07-30 2004-05-20 Palmer John M. Christmas tree shaped artificial tree
DE10235081A1 (en) 2002-08-02 2004-02-12 Vera Franjic-Grimsic Artificial Christmas tree has twin-core cable passing through base, trunk and branches supplying current to low-voltage lights which fit into connectors on branches
EP1424524A1 (en) 2002-11-28 2004-06-02 Heshan Jian Hao Lighting Ind. Co., Ltd. Decorative light
GB2396686A (en) 2002-12-18 2004-06-30 Packway Ind Ltd Christmas tree having fibre optic illumination
CN1509670A (en) 2002-12-20 2004-07-07 柏汇工业有限公司 Christmas tree with optical fibre lamp decoration
US20040145894A1 (en) 2003-01-28 2004-07-29 Long Danny W. Organizing and display device for decorative lighting
US20040182597A1 (en) 2003-03-20 2004-09-23 Smith Jack B. Carbon-core transmission cable
US6811283B1 (en) 2003-04-17 2004-11-02 Laszlo Kovacs Decorative illuminated artificial icicle assembly
US7014352B2 (en) 2003-04-18 2006-03-21 Jeng-Shyong Wu Endurable decoration light string
US20040222012A1 (en) 2003-05-06 2004-11-11 Electron Beam Technologies, Inc. Small-gauge signal cable and its method of use
US6840655B2 (en) 2003-06-06 2005-01-11 Ya-Kuang Shen LED light set
US6942355B1 (en) 2003-07-22 2005-09-13 Helen Castiglia Decorative lighting system for Christmas trees and other decorative trees and bushes
US6971768B1 (en) 2003-08-07 2005-12-06 Alvin M Pepito Decorative lighting system
CN2644876Y (en) 2003-08-21 2004-09-29 刘春明 Multicolor lamp string
US6982385B2 (en) 2003-12-04 2006-01-03 Jeng-Shyong Wu Wire cable of electrical conductor forming of multiple metals or alloys
US7045965B2 (en) 2004-01-30 2006-05-16 1 Energy Solutions, Inc. LED light module and series connected light modules
US7501579B2 (en) 2004-02-11 2009-03-10 Fort Wayne Metals Research Products Corporation Drawn strand filled tubing wire
US20060106444A1 (en) 2004-02-11 2006-05-18 Michael Mark S Drawn strand filled tubing wire
US7137719B2 (en) 2004-05-12 2006-11-21 Jeng-Shyong Wu Composite serial lamp set
US7063442B2 (en) 2004-06-23 2006-06-20 Inliten, Llc Decorative light string
CN2714949Y (en) 2004-06-29 2005-08-03 郑汉国 Lamp ornament for indoor curtain decoration
CN2751226Y (en) 2004-11-19 2006-01-11 义乌市通宝工艺品有限公司 LED luminous apparatus for Christmas trees
US7235815B2 (en) 2005-02-14 2007-06-26 Hsien-Ta Shen LED light set
CN2883887Y (en) 2006-02-11 2007-03-28 吴瑾 Ice strip lamp
US7750576B2 (en) 2006-03-01 2010-07-06 Kuo-An Pan Light string with external resistor unit
US8138680B2 (en) 2006-03-01 2012-03-20 Kuo-An Pan Light string with external resistor unit
US7249866B1 (en) 2006-05-19 2007-07-31 Daniel Tai Organizing and installation device for icicle lights
US7351092B2 (en) 2006-07-05 2008-04-01 Wei-Jen Tseng Connection assembly for a light string having a primary wire and secondary wires electrically connected to the primary wire and each secondary wire having light bulbs thereon
US20080025024A1 (en) 2006-07-31 2008-01-31 Jingjing Yu Parallel-series led light string
US20080049424A1 (en) 2006-08-22 2008-02-28 Yi-Jou Wang Decorative light string with C-type lamps
US20100089614A1 (en) 2006-10-11 2010-04-15 Francis Debladis electric control cable and an associated fabrication method
US20110062875A1 (en) 2006-12-22 2011-03-17 Seasonal Specialties, Llc Resistive bypass for series lighting circuit
US7481555B2 (en) 2006-12-26 2009-01-27 Excellence Opto, Inc. LED melody decoration kit with multicolor light sources
US7547843B2 (en) 2006-12-28 2009-06-16 3M Innovative Properties Company Overhead electrical power transmission line
US8822827B2 (en) 2007-02-16 2014-09-02 Nv Bekaert Sa Steel core for an electric transmission cable and method of fabricating it
US20090308637A1 (en) 2007-02-16 2009-12-17 Nv Bekaert Sa Steel core for an electric transmission cable and method of fabricating it
US7484995B2 (en) 2007-06-11 2009-02-03 Hui Dong Xie Qun Lighting Manufacturing Lamp system
US20080303446A1 (en) 2007-06-11 2008-12-11 Hui Dong Xie Qun Lighting Manufacturing Lamp system
US7893627B2 (en) 2007-06-18 2011-02-22 Xu-Liang Li Light strands
US20090002991A1 (en) 2007-06-28 2009-01-01 Kuo-Hao Huang Decorative light string
US8692120B2 (en) 2007-07-20 2014-04-08 Nexans Electrical control cable
US20100195332A1 (en) 2007-07-25 2010-08-05 Leslie Wasem Decorative Lighting Strand and Method of Assembling and Installing Same
US8480278B2 (en) 2007-07-25 2013-07-09 Wellspring Innovations, Llc Decorative lighting strand and method of assembling and installing same
CN201155672Y (en) 2007-11-30 2008-11-26 浙江天宇灯饰有限公司 Intelligent digital decorating lamp device
CN201129633Y (en) 2007-12-18 2008-10-08 周飞 Curtain lighting with one-way opening and closing
US7772495B2 (en) 2008-01-15 2010-08-10 Jeng-Shyong Wu Wire cable with saving energy
US7989703B2 (en) 2008-02-29 2011-08-02 Fort Wayne Metals Research Products Corporation Alternating core composite wire
US20110245824A1 (en) 2008-02-29 2011-10-06 Fort Wayne Metals Research Products Corporation Alternating core composite wire
US20090260852A1 (en) 2008-02-29 2009-10-22 Fort Wayne Metals Research Products Corporation Alternating core composite wire
CN201187701Y (en) 2008-04-02 2009-01-28 鹤山丽得电子实业有限公司 Belt lamp base structure
US20090256485A1 (en) 2008-04-14 2009-10-15 Jetmax Industrial Ltd. Decorative light string
CN201204717Y (en) 2008-05-08 2009-03-04 郑宏晖 Decorative lamp string structure of tungsten filament bulb combined with LED lamp
US20090322236A1 (en) 2008-06-27 2009-12-31 Chu-Cheng Chang Christmas light string with LED bulb loop and incandescent light bulb loop
US20110100677A1 (en) 2008-07-01 2011-05-05 Dow Global Technologies Inc. Fiber-polymer composite
US8309188B2 (en) 2008-07-07 2012-11-13 Polygroup Macau Limited (Bvi) Pull up tree system
US20110076425A1 (en) 2008-07-07 2011-03-31 Polygroup Macau Limited (Bvi) Pull Up Tree System
CN201288964Y (en) 2008-11-06 2009-08-12 浙江天宇灯饰有限公司 Flared LED lamp string
US8007129B2 (en) 2009-05-22 2011-08-30 Chen-Sheng Yang LED-based christmas light string assembly with parallel-wired lighting units
US8853721B2 (en) 2010-03-05 2014-10-07 Willis Electric Co., Ltd. Light-emitting diode with wire-piercing lead frame
US8592845B2 (en) 2010-03-05 2013-11-26 Willis Electric Co., Ltd. Wire-piercing light-emitting diode lamps
US8568015B2 (en) 2010-09-23 2013-10-29 Willis Electric Co., Ltd. Decorative light string for artificial lighted tree
US9055777B2 (en) 2010-09-23 2015-06-16 Willis Electric Co., Ltd. Modular artificial lighted tree with decorative light string
US8454186B2 (en) 2010-09-23 2013-06-04 Willis Electric Co., Ltd. Modular lighted tree with trunk electical connectors
EP2436808A1 (en) 2010-09-30 2012-04-04 NV Bekaert SA Multi-filament with annealed copper core and drawn steel layer
US20120086349A1 (en) 2010-10-06 2012-04-12 Segan Llc Decorative Light System
US20130033869A1 (en) 2011-08-03 2013-02-07 Denise Millington Interchangeable Decorative Lights
US20130062095A1 (en) 2011-09-12 2013-03-14 Hitachi Cable Fine-Tech, Ltd. Flat cable, cable harness using the same and method of making the flat cable
US8469750B2 (en) 2011-09-22 2013-06-25 Willis Electric Co., Ltd. LED lamp assembly and light strings including a lamp assembly
US8569960B2 (en) 2011-11-14 2013-10-29 Willis Electric Co., Ltd Conformal power adapter for lighted artificial tree
US9157588B2 (en) 2013-09-13 2015-10-13 Willis Electric Co., Ltd Decorative lighting with reinforced wiring
US9671097B2 (en) 2013-09-13 2017-06-06 Willis Electric Co., Ltd. Decorative lighting with reinforced wiring
US9140438B2 (en) 2013-09-13 2015-09-22 Willis Electric Co., Ltd. Decorative lighting with reinforced wiring
US20190203891A1 (en) 2013-09-13 2019-07-04 Willis Electric Co., Ltd. Tangle-resistant decorative lighting assembly
US9243788B2 (en) 2013-09-13 2016-01-26 Willis Electric Co., Ltd. Decorative lighting with reinforced wiring
US10222037B2 (en) 2013-09-13 2019-03-05 Willis Electric Co., Ltd. Decorative lighting with reinforced wiring
CN103680693A (en) 2013-11-22 2014-03-26 东莞固邦灯饰电线有限公司 Tensile cable and method for manufacturing same
US20150211696A1 (en) 2014-01-29 2015-07-30 Hung-Huei Cheng Multi-lamp decorating curtain light
CN203910314U (en) 2014-06-16 2014-10-29 高荣庆 Novel wire
CN204026296U (en) 2014-06-17 2014-12-17 郑靛青 A light string unit
US20150362139A1 (en) 2014-06-17 2015-12-17 Dianqing ZHENG Light String Unit
US9677725B2 (en) 2014-06-17 2017-06-13 Dianqing ZHENG Light string unit
CN203963649U (en) 2014-06-19 2014-11-26 郭正儒 Holiday String Lights with Composite Power Cord
US20160189827A1 (en) 2014-12-26 2016-06-30 Rongqing Gao Reinforcing-type electric wire
CN204708570U (en) 2015-06-25 2015-10-21 王建武 A kind of decorative curtain
US20170030534A1 (en) 2015-07-29 2017-02-02 Kuo-Wei Pan Wire Structure For Decorative Light String
US20170103829A1 (en) 2015-10-13 2017-04-13 Qin Yu Light string with reinforced wires
CN205026480U (en) 2015-10-13 2016-02-10 江门博凯灯饰有限公司 Tensile decorative chain
US9845925B2 (en) 2015-10-26 2017-12-19 Willis Electric Co., Ltd. Tangle-resistant decorative lighting assembly
US10119664B2 (en) 2015-10-26 2018-11-06 Willis Electric Co., Ltd. Tangle-resistant decorative lighting assembly
US10267464B2 (en) * 2015-10-26 2019-04-23 Willis Electric Co., Ltd. Tangle-resistant decorative lighting assembly
US10184654B1 (en) 2017-03-27 2019-01-22 Willis Electric Co., Ltd. Lighted decorative sculpture

Non-Patent Citations (32)

* Cited by examiner, † Cited by third party
Title
2008 Sylvania Net Light Set (12 pages).
ASTM B258-02 (2008), Standard Specification for Standard Nominal Diameters and Cross-Sectional Areas of AWG Sizes of Solid Round Wires Used as electrical Conductors, ASTM International, West Conshohocken, PA, 2008.
Decision Denying Institution of Inter Partes Review of U.S. Pat. No. 9,671,097, Case No. IPR2019-01484, dated Feb. 20, 2020 (40 pages).
Decision Denying Post-Grant Review of U.S. Pat. No. 10,119,664, Case No. PGR2019-00055, dated Feb. 13, 2020 (27 pages).
Decision Granting Institution of Inter Partes Review of U.S. Pat. No. 9,157,588, Case No. IPR2019-01485, dated Feb. 20, 2020 (54 pages).
Decision Granting Institution of Post-Grant Review of U.S. Pat. No. 10,222,037, Case No. PGR2019-00056, dated Feb. 20, 2020 (56 pages).
Declaration of Stephen D. Fantone, Ph.D, Case No. IPR2019-0484, filed on Aug. 12, 2019 with Petition for Inter Partes Review of U.S. Pat. No. 9,671,097 (346 pages).
Declaration of Stephen D. Fantone, Ph.D, Case No. IPR2019-0485, filed on Aug. 12, 2019 with Petition for Inter Partes Review of U.S. Pat. No. 9,157,588 (141 pages).
Declaration of Stephen D. Fantone, Ph.D, Case No. PGR2019-00055, filed on Aug. 5, 2019 with Petition for Post-Grant Review of U.S. Pat. No. 10,119,664 (202 pages).
Declaration of Stephen D. Fantone, Ph.D, Case No. PGR2019-00056, filed on Aug. 13, 2019 with Petition for Post-Grant Review of U.S. Pat. No. 10,222,037 (346 pages).
Declaration of Stuart B. Brown in Support of Patent Owner's Preliminary Response to Inter Partes Review of U.S. Pat. No. 9,157,588, Case No. IPR2019-01485, filed Nov. 25, 2019 (81 pages).
Declaration of Stuart B. Brown in Support of Patent Owner's Preliminary Response to Inter Partes Review of U.S. Pat. No. 9,671,097, Case No. IPR2019-0484, filed Nov. 25, 2019 (88 pages).
Declaration of Stuart B. Brown in Support of Patent Owner's Preliminary Response to Post-Grant Review of U.S. Pat. No. 10,119,664, Case No. PGR2019-00055, filed Nov. 14, 2019 (63 pages).
Declaration of Stuart B. Brown in Support of Patent Owner's Preliminary Response to Post-Grant Review of U.S. Pat. No. 10,222,037, Case No. PGR2019-00056, filed Nov. 27, 2019 (94 pages).
Huang, Wei, et al. (2016), An Approach to Predict the Tensile Strength of a Two-Ply Yarn from Single Filament Yarn, The Journal of the Textile Institute, Mar. 15, pp. 1-5.
Patent Owner's Preliminary Response to Petition for Post-Grant Review of U.S. Pat. No. 10,119,664, Case No. PGR2019-00055, filed Nov. 14, 2019 (61 pages).
Patent Owner's Preliminary Response, Case No. IPR2019-0484, filed Nov. 25, 2019 (86 pages).
Patent Owner's Preliminary Response, Case No. IPR2019-0485, filed Nov. 25, 2019 (79 pages).
Patent Owner's Preliminary Response, Case No. PGR2019-00056, filed Nov. 27, 2019 (85 pages).
Petition for Inter Partes Review of U.S. Pat. No. 9,157,588, Case No. IPR2019-0485, filed Aug. 12, 2019 (87 pages).
Petition for Inter Partes Review of U.S. Pat. No. 9,671,097, Case No. IPR2019-0484, filed Aug. 12, 2019 (95 pages).
Petition for Post-Grant Review of U.S. Pat. No. 10,119,664, Case No. PGR2019-00055, filed Aug. 5, 2019 (122 pages).
Petition for Post-Grant Review of U.S. Pat. No. 10,222,037, Case No. PGR2019-00056, filed Aug. 13, 2019 (158 pages).
U.S. Appl. No. 14/328,221, filed Jul. 10, 2014, inventor Johnny Chen.
U.S. Appl. No. 14/485,911, filed Sep. 15, 2014, inventor Johnny Chen.
U.S. Appl. No. 14/627,427, filed Feb. 20, 2015, inventor Johnny Chen.
U.S. Appl. No. 14/886,344, filed Oct. 19, 2015, inventor Johnny Chen.
U.S. Appl. No. 15/333,535, filed Oct. 25, 2016, inventor Johnny Chen.
U.S. Appl. No. 15/588,114, filed May 5, 2017, inventor Johnny Chen.
U.S. Appl. No. 15/813,011, filed Nov. 14, 2017, inventor Johnny Chen.
U.S. Appl. No. 16/368,681, filed Mar. 28, 2019, inventor Johnny Chen.
Underwriters Laboratories Standard for Safety for Seasonal and Holiday Decorative Products, UL 588, 18th Ed., 224 pages (Feb. 15, 2002).

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US11085595B2 (en) 2013-09-13 2021-08-10 Willis Electric Co., Ltd. Tangle-resistant decorative lighting assembly
US11306881B2 (en) * 2013-09-13 2022-04-19 Willis Electric Co., Ltd. Tangle-resistant decorative lighting assembly
US11578842B2 (en) 2013-09-13 2023-02-14 Willis Electric Co., Ltd. Tangle-resistant decorative lighting assembly
US20240110676A1 (en) * 2013-09-13 2024-04-04 Willis Electric Co., Ltd Tangle-resistant decorative lighting assembly
US12228257B2 (en) * 2013-09-13 2025-02-18 Willis Electric Co., Ltd. Tangle-resistant decorative lighting assembly
US11415275B1 (en) * 2021-05-26 2022-08-16 Zhuhai Bojay Electronics Co. Ltd. LED light string with single wire and illumination device

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US10718475B2 (en) 2020-07-21

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